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CommitLineData
31e31b8a
FB
1/*
2 * Linux syscalls
5fafdf24 3 *
31e31b8a
FB
4 * Copyright (c) 2003 Fabrice Bellard
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
8167ee88 17 * along with this program; if not, see <http://www.gnu.org/licenses/>.
31e31b8a 18 */
d5b3a9b6 19#define _ATFILE_SOURCE
d39594e9 20#include "qemu/osdep.h"
f348b6d1
VB
21#include "qemu/cutils.h"
22#include "qemu/path.h"
9bdfa4d2 23#include "qemu/memfd.h"
dc5e9ac7 24#include "qemu/queue.h"
720ace24 25#include "qemu/plugin.h"
d7ec12f8 26#include "tcg/startup.h"
fe080593 27#include "target_mman.h"
31e31b8a
FB
28#include <elf.h>
29#include <endian.h>
c56dc774 30#include <grp.h>
d08d3bb8
TS
31#include <sys/ipc.h>
32#include <sys/msg.h>
31e31b8a 33#include <sys/wait.h>
31e31b8a 34#include <sys/mount.h>
586b0bef
JS
35#include <sys/file.h>
36#include <sys/fsuid.h>
37#include <sys/personality.h>
39b9aae1 38#include <sys/prctl.h>
31e31b8a 39#include <sys/resource.h>
31e31b8a 40#include <sys/swap.h>
e0eb210e 41#include <linux/capability.h>
31e31b8a 42#include <sched.h>
19f59bce 43#include <sys/timex.h>
31e31b8a 44#include <sys/socket.h>
6d5d5dde 45#include <linux/sockios.h>
607175e0 46#include <sys/un.h>
31e31b8a 47#include <sys/uio.h>
0839f11c 48#include <poll.h>
32f36bce 49#include <sys/times.h>
8853f86e 50#include <sys/shm.h>
fa294816 51#include <sys/sem.h>
56c8f68f 52#include <sys/statfs.h>
ebc05488 53#include <utime.h>
a5448a7d 54#include <sys/sysinfo.h>
e36800c9 55#include <sys/signalfd.h>
72f03900 56//#include <sys/user.h>
22db1213 57#include <netinet/in.h>
8853f86e 58#include <netinet/ip.h>
7854b056 59#include <netinet/tcp.h>
fe51b0a5 60#include <netinet/udp.h>
86fcd946 61#include <linux/wireless.h>
920394db 62#include <linux/icmp.h>
ee1ac3a1 63#include <linux/icmpv6.h>
6addf06a 64#include <linux/if_tun.h>
22db1213 65#include <linux/in6.h>
ee1ac3a1 66#include <linux/errqueue.h>
d6d6d6fe 67#include <linux/random.h>
d80a1905
RV
68#ifdef CONFIG_TIMERFD
69#include <sys/timerfd.h>
70#endif
c2882b96
RV
71#ifdef CONFIG_EVENTFD
72#include <sys/eventfd.h>
73#endif
3b6edd16
PM
74#ifdef CONFIG_EPOLL
75#include <sys/epoll.h>
76#endif
a790ae38 77#ifdef CONFIG_ATTR
1de7afc9 78#include "qemu/xattr.h"
a790ae38 79#endif
a8fd1aba
PM
80#ifdef CONFIG_SENDFILE
81#include <sys/sendfile.h>
82#endif
4a9d5f89 83#ifdef HAVE_SYS_KCOV_H
bd27e675
AM
84#include <sys/kcov.h>
85#endif
31e31b8a
FB
86
87#define termios host_termios
88#define winsize host_winsize
89#define termio host_termio
04369ff2
FB
90#define sgttyb host_sgttyb /* same as target */
91#define tchars host_tchars /* same as target */
92#define ltchars host_ltchars /* same as target */
31e31b8a
FB
93
94#include <linux/termios.h>
95#include <linux/unistd.h>
31e31b8a
FB
96#include <linux/cdrom.h>
97#include <linux/hdreg.h>
98#include <linux/soundcard.h>
19b84f3c 99#include <linux/kd.h>
8fbd6b52 100#include <linux/mtio.h>
350d1779 101#include <linux/fs.h>
ab22b4dd 102#include <linux/fd.h>
dace20dc 103#if defined(CONFIG_FIEMAP)
285da2b9 104#include <linux/fiemap.h>
dace20dc 105#endif
f7680a55 106#include <linux/fb.h>
6c753a63
CT
107#if defined(CONFIG_USBFS)
108#include <linux/usbdevice_fs.h>
a133367e 109#include <linux/usb/ch9.h>
6c753a63 110#endif
f7680a55 111#include <linux/vt.h>
56e904ec 112#include <linux/dm-ioctl.h>
c07ecc68 113#include <linux/reboot.h>
7ff7b666 114#include <linux/route.h>
f57d4192 115#include <linux/filter.h>
fff8c539 116#include <linux/blkpg.h>
a82ea939 117#include <netpacket/packet.h>
6c5b5645 118#include <linux/netlink.h>
f31dddd2 119#include <linux/if_alg.h>
68365f96 120#include <linux/rtc.h>
1c4c6fcd 121#include <sound/asound.h>
48f670ec 122#ifdef HAVE_BTRFS_H
d6092e08
FB
123#include <linux/btrfs.h>
124#endif
e865b97f
CG
125#ifdef HAVE_DRM_H
126#include <libdrm/drm.h>
913b03c2 127#include <libdrm/i915_drm.h>
e865b97f 128#endif
d7e4036e 129#include "linux_loop.h"
18cb0088 130#include "uname.h"
31e31b8a 131
3ef693a0 132#include "qemu.h"
3b249d26 133#include "user-internals.h"
a44d57a3 134#include "strace.h"
2113aed6 135#include "signal-common.h"
3ad0a769 136#include "loader.h"
5423e6d3 137#include "user-mmap.h"
bbf15aaf 138#include "user/safe-syscall.h"
5ebdd774 139#include "qemu/guest-random.h"
01ef6b9e 140#include "qemu/selfmap.h"
c36f7a64 141#include "user/syscall-trace.h"
5da4063f 142#include "special-errno.h"
51977e25 143#include "qapi/error.h"
f7e6a401 144#include "fd-trans.h"
bd5ccd61 145#include "cpu_loop-common.h"
31e31b8a 146
5ea2fc84
PM
147#ifndef CLONE_IO
148#define CLONE_IO 0x80000000 /* Clone io context */
149#endif
150
151/* We can't directly call the host clone syscall, because this will
152 * badly confuse libc (breaking mutexes, for example). So we must
153 * divide clone flags into:
154 * * flag combinations that look like pthread_create()
155 * * flag combinations that look like fork()
156 * * flags we can implement within QEMU itself
157 * * flags we can't support and will return an error for
158 */
159/* For thread creation, all these flags must be present; for
160 * fork, none must be present.
161 */
162#define CLONE_THREAD_FLAGS \
163 (CLONE_VM | CLONE_FS | CLONE_FILES | \
164 CLONE_SIGHAND | CLONE_THREAD | CLONE_SYSVSEM)
165
166/* These flags are ignored:
167 * CLONE_DETACHED is now ignored by the kernel;
168 * CLONE_IO is just an optimisation hint to the I/O scheduler
169 */
170#define CLONE_IGNORED_FLAGS \
171 (CLONE_DETACHED | CLONE_IO)
172
895ce8bb
HD
173#ifndef CLONE_PIDFD
174# define CLONE_PIDFD 0x00001000
175#endif
176
5ea2fc84
PM
177/* Flags for fork which we can implement within QEMU itself */
178#define CLONE_OPTIONAL_FORK_FLAGS \
895ce8bb 179 (CLONE_SETTLS | CLONE_PARENT_SETTID | CLONE_PIDFD | \
5ea2fc84
PM
180 CLONE_CHILD_CLEARTID | CLONE_CHILD_SETTID)
181
182/* Flags for thread creation which we can implement within QEMU itself */
183#define CLONE_OPTIONAL_THREAD_FLAGS \
184 (CLONE_SETTLS | CLONE_PARENT_SETTID | \
185 CLONE_CHILD_CLEARTID | CLONE_CHILD_SETTID | CLONE_PARENT)
186
187#define CLONE_INVALID_FORK_FLAGS \
188 (~(CSIGNAL | CLONE_OPTIONAL_FORK_FLAGS | CLONE_IGNORED_FLAGS))
189
190#define CLONE_INVALID_THREAD_FLAGS \
191 (~(CSIGNAL | CLONE_THREAD_FLAGS | CLONE_OPTIONAL_THREAD_FLAGS | \
192 CLONE_IGNORED_FLAGS))
193
194/* CLONE_VFORK is special cased early in do_fork(). The other flag bits
195 * have almost all been allocated. We cannot support any of
196 * CLONE_NEWNS, CLONE_NEWCGROUP, CLONE_NEWUTS, CLONE_NEWIPC,
197 * CLONE_NEWUSER, CLONE_NEWPID, CLONE_NEWNET, CLONE_PTRACE, CLONE_UNTRACED.
198 * The checks against the invalid thread masks above will catch these.
199 * (The one remaining unallocated bit is 0x1000 which used to be CLONE_PID.)
200 */
30813cea 201
71a8f7fe
TB
202/* Define DEBUG_ERESTARTSYS to force every syscall to be restarted
203 * once. This exercises the codepaths for restart.
204 */
205//#define DEBUG_ERESTARTSYS
31e31b8a 206
1a9353d2 207//#include <linux/msdos_fs.h>
540a736f
RH
208#define VFAT_IOCTL_READDIR_BOTH \
209 _IOC(_IOC_READ, 'r', 1, (sizeof(struct linux_dirent) + 256) * 2)
210#define VFAT_IOCTL_READDIR_SHORT \
211 _IOC(_IOC_READ, 'r', 2, (sizeof(struct linux_dirent) + 256) * 2)
1a9353d2 212
70a194b9
FB
213#undef _syscall0
214#undef _syscall1
215#undef _syscall2
216#undef _syscall3
217#undef _syscall4
218#undef _syscall5
83fcb515 219#undef _syscall6
70a194b9 220
83fcb515 221#define _syscall0(type,name) \
8fcd3692 222static type name (void) \
83fcb515
FB
223{ \
224 return syscall(__NR_##name); \
225}
70a194b9 226
83fcb515 227#define _syscall1(type,name,type1,arg1) \
8fcd3692 228static type name (type1 arg1) \
83fcb515
FB
229{ \
230 return syscall(__NR_##name, arg1); \
70a194b9
FB
231}
232
83fcb515 233#define _syscall2(type,name,type1,arg1,type2,arg2) \
8fcd3692 234static type name (type1 arg1,type2 arg2) \
83fcb515
FB
235{ \
236 return syscall(__NR_##name, arg1, arg2); \
70a194b9
FB
237}
238
83fcb515 239#define _syscall3(type,name,type1,arg1,type2,arg2,type3,arg3) \
8fcd3692 240static type name (type1 arg1,type2 arg2,type3 arg3) \
83fcb515
FB
241{ \
242 return syscall(__NR_##name, arg1, arg2, arg3); \
70a194b9
FB
243}
244
83fcb515 245#define _syscall4(type,name,type1,arg1,type2,arg2,type3,arg3,type4,arg4) \
8fcd3692 246static type name (type1 arg1,type2 arg2,type3 arg3,type4 arg4) \
83fcb515
FB
247{ \
248 return syscall(__NR_##name, arg1, arg2, arg3, arg4); \
70a194b9
FB
249}
250
83fcb515
FB
251#define _syscall5(type,name,type1,arg1,type2,arg2,type3,arg3,type4,arg4, \
252 type5,arg5) \
8fcd3692 253static type name (type1 arg1,type2 arg2,type3 arg3,type4 arg4,type5 arg5) \
83fcb515
FB
254{ \
255 return syscall(__NR_##name, arg1, arg2, arg3, arg4, arg5); \
70a194b9
FB
256}
257
83fcb515
FB
258
259#define _syscall6(type,name,type1,arg1,type2,arg2,type3,arg3,type4,arg4, \
260 type5,arg5,type6,arg6) \
8fcd3692
BS
261static type name (type1 arg1,type2 arg2,type3 arg3,type4 arg4,type5 arg5, \
262 type6 arg6) \
83fcb515
FB
263{ \
264 return syscall(__NR_##name, arg1, arg2, arg3, arg4, arg5, arg6); \
70a194b9 265}
83fcb515 266
70a194b9 267
31e31b8a 268#define __NR_sys_uname __NR_uname
72f03900 269#define __NR_sys_getcwd1 __NR_getcwd
72f03900 270#define __NR_sys_getdents __NR_getdents
dab2ed99 271#define __NR_sys_getdents64 __NR_getdents64
c6cda17a 272#define __NR_sys_getpriority __NR_getpriority
66fb9763 273#define __NR_sys_rt_sigqueueinfo __NR_rt_sigqueueinfo
cf8b8bfc 274#define __NR_sys_rt_tgsigqueueinfo __NR_rt_tgsigqueueinfo
7494b0f9 275#define __NR_sys_syslog __NR_syslog
14690296
AF
276#if defined(__NR_futex)
277# define __NR_sys_futex __NR_futex
278#endif
279#if defined(__NR_futex_time64)
280# define __NR_sys_futex_time64 __NR_futex_time64
281#endif
efa92184 282#define __NR_sys_statx __NR_statx
31e31b8a 283
b1cef6d0 284#if defined(__alpha__) || defined(__x86_64__) || defined(__s390x__)
9af9eaaa
FB
285#define __NR__llseek __NR_lseek
286#endif
287
a29e5ba2
JH
288/* Newer kernel ports have llseek() instead of _llseek() */
289#if defined(TARGET_NR_llseek) && !defined(TARGET_NR__llseek)
290#define TARGET_NR__llseek TARGET_NR_llseek
291#endif
292
78721301
HD
293/* some platforms need to mask more bits than just TARGET_O_NONBLOCK */
294#ifndef TARGET_O_NONBLOCK_MASK
295#define TARGET_O_NONBLOCK_MASK TARGET_O_NONBLOCK
296#endif
297
71ba74f6
DB
298#define __NR_sys_gettid __NR_gettid
299_syscall0(int, sys_gettid)
2b3f64cb
PM
300
301/* For the 64-bit guest on 32-bit host case we must emulate
302 * getdents using getdents64, because otherwise the host
303 * might hand us back more dirent records than we can fit
304 * into the guest buffer after structure format conversion.
305 * Otherwise we emulate getdents with getdents if the host has it.
306 */
307#if defined(__NR_getdents) && HOST_LONG_BITS >= TARGET_ABI_BITS
308#define EMULATE_GETDENTS_WITH_GETDENTS
309#endif
310
311#if defined(TARGET_NR_getdents) && defined(EMULATE_GETDENTS_WITH_GETDENTS)
ac42f443 312_syscall3(int, sys_getdents, unsigned int, fd, struct linux_dirent *, dirp, unsigned int, count);
3307e236 313#endif
2b3f64cb
PM
314#if (defined(TARGET_NR_getdents) && \
315 !defined(EMULATE_GETDENTS_WITH_GETDENTS)) || \
3307e236 316 (defined(TARGET_NR_getdents64) && defined(__NR_getdents64))
ac42f443 317_syscall3(int, sys_getdents64, unsigned int, fd, struct linux_dirent64 *, dirp, unsigned int, count);
3b3f24ad 318#endif
d35b261c 319#if defined(TARGET_NR__llseek) && defined(__NR_llseek)
ac42f443
JQ
320_syscall5(int, _llseek, unsigned int, fd, unsigned long, hi, unsigned long, lo,
321 loff_t *, res, unsigned int, wh);
3b3f24ad 322#endif
c1a402a7 323_syscall3(int, sys_rt_sigqueueinfo, pid_t, pid, int, sig, siginfo_t *, uinfo)
cf8b8bfc
MS
324_syscall4(int, sys_rt_tgsigqueueinfo, pid_t, pid, pid_t, tid, int, sig,
325 siginfo_t *, uinfo)
3b3f24ad 326_syscall3(int,sys_syslog,int,type,char*,bufp,int,len)
3b3f24ad
AJ
327#ifdef __NR_exit_group
328_syscall1(int,exit_group,int,error_code)
329#endif
af804f39
HD
330#if defined(__NR_close_range) && defined(TARGET_NR_close_range)
331#define __NR_sys_close_range __NR_close_range
332_syscall3(int,sys_close_range,int,first,int,last,int,flags)
333#ifndef CLOSE_RANGE_CLOEXEC
334#define CLOSE_RANGE_CLOEXEC (1U << 2)
335#endif
336#endif
14690296 337#if defined(__NR_futex)
3b3f24ad
AJ
338_syscall6(int,sys_futex,int *,uaddr,int,op,int,val,
339 const struct timespec *,timeout,int *,uaddr2,int,val3)
340#endif
14690296
AF
341#if defined(__NR_futex_time64)
342_syscall6(int,sys_futex_time64,int *,uaddr,int,op,int,val,
343 const struct timespec *,timeout,int *,uaddr2,int,val3)
344#endif
cc054c6f
HD
345#if defined(__NR_pidfd_open) && defined(TARGET_NR_pidfd_open)
346_syscall2(int, pidfd_open, pid_t, pid, unsigned int, flags);
347#endif
348#if defined(__NR_pidfd_send_signal) && defined(TARGET_NR_pidfd_send_signal)
349_syscall4(int, pidfd_send_signal, int, pidfd, int, sig, siginfo_t *, info,
350 unsigned int, flags);
351#endif
352#if defined(__NR_pidfd_getfd) && defined(TARGET_NR_pidfd_getfd)
353_syscall3(int, pidfd_getfd, int, pidfd, int, targetfd, unsigned int, flags);
354#endif
737de1d1
MF
355#define __NR_sys_sched_getaffinity __NR_sched_getaffinity
356_syscall3(int, sys_sched_getaffinity, pid_t, pid, unsigned int, len,
357 unsigned long *, user_mask_ptr);
358#define __NR_sys_sched_setaffinity __NR_sched_setaffinity
359_syscall3(int, sys_sched_setaffinity, pid_t, pid, unsigned int, len,
360 unsigned long *, user_mask_ptr);
45ad761c
TT
361/* sched_attr is not defined in glibc */
362struct sched_attr {
363 uint32_t size;
364 uint32_t sched_policy;
365 uint64_t sched_flags;
366 int32_t sched_nice;
367 uint32_t sched_priority;
368 uint64_t sched_runtime;
369 uint64_t sched_deadline;
370 uint64_t sched_period;
371 uint32_t sched_util_min;
372 uint32_t sched_util_max;
373};
374#define __NR_sys_sched_getattr __NR_sched_getattr
375_syscall4(int, sys_sched_getattr, pid_t, pid, struct sched_attr *, attr,
376 unsigned int, size, unsigned int, flags);
377#define __NR_sys_sched_setattr __NR_sched_setattr
378_syscall3(int, sys_sched_setattr, pid_t, pid, struct sched_attr *, attr,
379 unsigned int, flags);
407a119b
TT
380#define __NR_sys_sched_getscheduler __NR_sched_getscheduler
381_syscall1(int, sys_sched_getscheduler, pid_t, pid);
382#define __NR_sys_sched_setscheduler __NR_sched_setscheduler
383_syscall3(int, sys_sched_setscheduler, pid_t, pid, int, policy,
384 const struct sched_param *, param);
385#define __NR_sys_sched_getparam __NR_sched_getparam
386_syscall2(int, sys_sched_getparam, pid_t, pid,
387 struct sched_param *, param);
388#define __NR_sys_sched_setparam __NR_sched_setparam
389_syscall2(int, sys_sched_setparam, pid_t, pid,
390 const struct sched_param *, param);
b827c3ed
ST
391#define __NR_sys_getcpu __NR_getcpu
392_syscall3(int, sys_getcpu, unsigned *, cpu, unsigned *, node, void *, tcache);
0f6b4d21
AG
393_syscall4(int, reboot, int, magic1, int, magic2, unsigned int, cmd,
394 void *, arg);
e0eb210e
PM
395_syscall2(int, capget, struct __user_cap_header_struct *, header,
396 struct __user_cap_data_struct *, data);
397_syscall2(int, capset, struct __user_cap_header_struct *, header,
398 struct __user_cap_data_struct *, data);
ab31cda3
PB
399#if defined(TARGET_NR_ioprio_get) && defined(__NR_ioprio_get)
400_syscall2(int, ioprio_get, int, which, int, who)
401#endif
402#if defined(TARGET_NR_ioprio_set) && defined(__NR_ioprio_set)
403_syscall3(int, ioprio_set, int, which, int, who, int, ioprio)
404#endif
f894efd1
LV
405#if defined(TARGET_NR_getrandom) && defined(__NR_getrandom)
406_syscall3(int, getrandom, void *, buf, size_t, buflen, unsigned int, flags)
407#endif
3b3f24ad 408
2f14788c
LV
409#if defined(TARGET_NR_kcmp) && defined(__NR_kcmp)
410_syscall5(int, kcmp, pid_t, pid1, pid_t, pid2, int, type,
411 unsigned long, idx1, unsigned long, idx2)
412#endif
413
efa92184
AR
414/*
415 * It is assumed that struct statx is architecture independent.
416 */
417#if defined(TARGET_NR_statx) && defined(__NR_statx)
418_syscall5(int, sys_statx, int, dirfd, const char *, pathname, int, flags,
419 unsigned int, mask, struct target_statx *, statxbuf)
420#endif
8500476f
AS
421#if defined(TARGET_NR_membarrier) && defined(__NR_membarrier)
422_syscall2(int, membarrier, int, cmd, int, flags)
423#endif
efa92184 424
180d4ef3 425static const bitmask_transtbl fcntl_flags_tbl[] = {
3b3f24ad
AJ
426 { TARGET_O_ACCMODE, TARGET_O_WRONLY, O_ACCMODE, O_WRONLY, },
427 { TARGET_O_ACCMODE, TARGET_O_RDWR, O_ACCMODE, O_RDWR, },
428 { TARGET_O_CREAT, TARGET_O_CREAT, O_CREAT, O_CREAT, },
429 { TARGET_O_EXCL, TARGET_O_EXCL, O_EXCL, O_EXCL, },
430 { TARGET_O_NOCTTY, TARGET_O_NOCTTY, O_NOCTTY, O_NOCTTY, },
431 { TARGET_O_TRUNC, TARGET_O_TRUNC, O_TRUNC, O_TRUNC, },
432 { TARGET_O_APPEND, TARGET_O_APPEND, O_APPEND, O_APPEND, },
433 { TARGET_O_NONBLOCK, TARGET_O_NONBLOCK, O_NONBLOCK, O_NONBLOCK, },
afc8763f 434 { TARGET_O_SYNC, TARGET_O_DSYNC, O_SYNC, O_DSYNC, },
3b3f24ad
AJ
435 { TARGET_O_SYNC, TARGET_O_SYNC, O_SYNC, O_SYNC, },
436 { TARGET_FASYNC, TARGET_FASYNC, FASYNC, FASYNC, },
437 { TARGET_O_DIRECTORY, TARGET_O_DIRECTORY, O_DIRECTORY, O_DIRECTORY, },
438 { TARGET_O_NOFOLLOW, TARGET_O_NOFOLLOW, O_NOFOLLOW, O_NOFOLLOW, },
3b3f24ad
AJ
439#if defined(O_DIRECT)
440 { TARGET_O_DIRECT, TARGET_O_DIRECT, O_DIRECT, O_DIRECT, },
afc8763f
RH
441#endif
442#if defined(O_NOATIME)
443 { TARGET_O_NOATIME, TARGET_O_NOATIME, O_NOATIME, O_NOATIME },
444#endif
445#if defined(O_CLOEXEC)
446 { TARGET_O_CLOEXEC, TARGET_O_CLOEXEC, O_CLOEXEC, O_CLOEXEC },
447#endif
448#if defined(O_PATH)
449 { TARGET_O_PATH, TARGET_O_PATH, O_PATH, O_PATH },
5f9cee46
RV
450#endif
451#if defined(O_TMPFILE)
452 { TARGET_O_TMPFILE, TARGET_O_TMPFILE, O_TMPFILE, O_TMPFILE },
afc8763f
RH
453#endif
454 /* Don't terminate the list prematurely on 64-bit host+guest. */
455#if TARGET_O_LARGEFILE != 0 || O_LARGEFILE != 0
456 { TARGET_O_LARGEFILE, TARGET_O_LARGEFILE, O_LARGEFILE, O_LARGEFILE, },
3b3f24ad 457#endif
3b3f24ad
AJ
458};
459
0f6bb195 460_syscall2(int, sys_getcwd1, char *, buf, size_t, size)
3b3f24ad 461
cac46eb0 462#if defined(TARGET_NR_utimensat) || defined(TARGET_NR_utimensat_time64)
700fa58e 463#if defined(__NR_utimensat)
1acae9f2 464#define __NR_sys_utimensat __NR_utimensat
9007f0ef
TS
465_syscall4(int,sys_utimensat,int,dirfd,const char *,pathname,
466 const struct timespec *,tsp,int,flags)
1acae9f2
PM
467#else
468static int sys_utimensat(int dirfd, const char *pathname,
469 const struct timespec times[2], int flags)
470{
471 errno = ENOSYS;
472 return -1;
473}
9007f0ef 474#endif
1acae9f2 475#endif /* TARGET_NR_utimensat */
3b3f24ad 476
95d0307c
AS
477#ifdef TARGET_NR_renameat2
478#if defined(__NR_renameat2)
479#define __NR_sys_renameat2 __NR_renameat2
480_syscall5(int, sys_renameat2, int, oldfd, const char *, old, int, newfd,
481 const char *, new, unsigned int, flags)
482#else
483static int sys_renameat2(int oldfd, const char *old,
484 int newfd, const char *new, int flags)
485{
486 if (flags == 0) {
487 return renameat(oldfd, old, newfd, new);
488 }
489 errno = ENOSYS;
490 return -1;
491}
492#endif
493#endif /* TARGET_NR_renameat2 */
494
3b3f24ad 495#ifdef CONFIG_INOTIFY
8690e420 496#include <sys/inotify.h>
3b3f24ad
AJ
497#else
498/* Userspace can usually survive runtime without inotify */
499#undef TARGET_NR_inotify_init
c05c7a73 500#undef TARGET_NR_inotify_init1
3b3f24ad
AJ
501#undef TARGET_NR_inotify_add_watch
502#undef TARGET_NR_inotify_rm_watch
503#endif /* CONFIG_INOTIFY */
504
163a05a8
PM
505#if defined(TARGET_NR_prlimit64)
506#ifndef __NR_prlimit64
507# define __NR_prlimit64 -1
508#endif
509#define __NR_sys_prlimit64 __NR_prlimit64
510/* The glibc rlimit structure may not be that used by the underlying syscall */
511struct host_rlimit64 {
512 uint64_t rlim_cur;
513 uint64_t rlim_max;
514};
515_syscall4(int, sys_prlimit64, pid_t, pid, int, resource,
516 const struct host_rlimit64 *, new_limit,
517 struct host_rlimit64 *, old_limit)
518#endif
519
f4f1e10a
ECL
520
521#if defined(TARGET_NR_timer_create)
6f9ff551 522/* Maximum of 32 active POSIX timers allowed at any one time. */
9e59899f
PM
523#define GUEST_TIMER_MAX 32
524static timer_t g_posix_timers[GUEST_TIMER_MAX];
525static int g_posix_timer_allocated[GUEST_TIMER_MAX];
f4f1e10a
ECL
526
527static inline int next_free_host_timer(void)
528{
9e59899f
PM
529 int k;
530 for (k = 0; k < ARRAY_SIZE(g_posix_timer_allocated); k++) {
531 if (qatomic_xchg(g_posix_timer_allocated + k, 1) == 0) {
f4f1e10a
ECL
532 return k;
533 }
534 }
535 return -1;
536}
9e59899f
PM
537
538static inline void free_host_timer_slot(int id)
539{
540 qatomic_store_release(g_posix_timer_allocated + id, 0);
541}
f4f1e10a
ECL
542#endif
543
3ffe3268 544static inline int host_to_target_errno(int host_errno)
637947f1 545{
3ffe3268
PMD
546 switch (host_errno) {
547#define E(X) case X: return TARGET_##X;
548#include "errnos.c.inc"
549#undef E
550 default:
551 return host_errno;
2466119c 552 }
637947f1
TS
553}
554
3ffe3268 555static inline int target_to_host_errno(int target_errno)
b92c47c1 556{
3ffe3268
PMD
557 switch (target_errno) {
558#define E(X) case TARGET_##X: return X;
559#include "errnos.c.inc"
560#undef E
561 default:
562 return target_errno;
2466119c 563 }
b92c47c1
TS
564}
565
892a4f6a 566abi_long get_errno(abi_long ret)
31e31b8a
FB
567{
568 if (ret == -1)
637947f1 569 return -host_to_target_errno(errno);
31e31b8a
FB
570 else
571 return ret;
572}
573
7dcdaeaf 574const char *target_strerror(int err)
b92c47c1 575{
af254a27 576 if (err == QEMU_ERESTARTSYS) {
da2a34f7
PM
577 return "To be restarted";
578 }
57a0c938 579 if (err == QEMU_ESIGRETURN) {
da2a34f7
PM
580 return "Successful exit from sigreturn";
581 }
582
b92c47c1
TS
583 return strerror(target_to_host_errno(err));
584}
585
45ad761c
TT
586static int check_zeroed_user(abi_long addr, size_t ksize, size_t usize)
587{
588 int i;
589 uint8_t b;
590 if (usize <= ksize) {
591 return 1;
592 }
593 for (i = ksize; i < usize; i++) {
594 if (get_user_u8(b, addr + i)) {
595 return -TARGET_EFAULT;
596 }
597 if (b != 0) {
598 return 0;
599 }
600 }
601 return 1;
602}
603
4d330cee
TB
604#define safe_syscall0(type, name) \
605static type safe_##name(void) \
606{ \
607 return safe_syscall(__NR_##name); \
608}
609
610#define safe_syscall1(type, name, type1, arg1) \
611static type safe_##name(type1 arg1) \
612{ \
613 return safe_syscall(__NR_##name, arg1); \
614}
615
616#define safe_syscall2(type, name, type1, arg1, type2, arg2) \
617static type safe_##name(type1 arg1, type2 arg2) \
618{ \
619 return safe_syscall(__NR_##name, arg1, arg2); \
620}
621
622#define safe_syscall3(type, name, type1, arg1, type2, arg2, type3, arg3) \
623static type safe_##name(type1 arg1, type2 arg2, type3 arg3) \
624{ \
625 return safe_syscall(__NR_##name, arg1, arg2, arg3); \
626}
627
628#define safe_syscall4(type, name, type1, arg1, type2, arg2, type3, arg3, \
629 type4, arg4) \
630static type safe_##name(type1 arg1, type2 arg2, type3 arg3, type4 arg4) \
631{ \
632 return safe_syscall(__NR_##name, arg1, arg2, arg3, arg4); \
633}
634
635#define safe_syscall5(type, name, type1, arg1, type2, arg2, type3, arg3, \
636 type4, arg4, type5, arg5) \
637static type safe_##name(type1 arg1, type2 arg2, type3 arg3, type4 arg4, \
638 type5 arg5) \
639{ \
640 return safe_syscall(__NR_##name, arg1, arg2, arg3, arg4, arg5); \
641}
642
643#define safe_syscall6(type, name, type1, arg1, type2, arg2, type3, arg3, \
644 type4, arg4, type5, arg5, type6, arg6) \
645static type safe_##name(type1 arg1, type2 arg2, type3 arg3, type4 arg4, \
646 type5 arg5, type6 arg6) \
647{ \
648 return safe_syscall(__NR_##name, arg1, arg2, arg3, arg4, arg5, arg6); \
649}
650
50afd02b
TB
651safe_syscall3(ssize_t, read, int, fd, void *, buff, size_t, count)
652safe_syscall3(ssize_t, write, int, fd, const void *, buff, size_t, count)
c10a0738
TB
653safe_syscall4(int, openat, int, dirfd, const char *, pathname, \
654 int, flags, mode_t, mode)
859e8a89 655#if defined(TARGET_NR_wait4) || defined(TARGET_NR_waitpid)
4af80a37
TB
656safe_syscall4(pid_t, wait4, pid_t, pid, int *, status, int, options, \
657 struct rusage *, rusage)
859e8a89 658#endif
4af80a37
TB
659safe_syscall5(int, waitid, idtype_t, idtype, id_t, id, siginfo_t *, infop, \
660 int, options, struct rusage *, rusage)
7a8d9f3a 661safe_syscall3(int, execve, const char *, filename, char **, argv, char **, envp)
55bbe4d5
DD
662safe_syscall5(int, execveat, int, dirfd, const char *, filename,
663 char **, argv, char **, envp, int, flags)
859e8a89 664#if defined(TARGET_NR_select) || defined(TARGET_NR__newselect) || \
e5ce9688 665 defined(TARGET_NR_pselect6) || defined(TARGET_NR_pselect6_time64)
6df9d38d
PM
666safe_syscall6(int, pselect6, int, nfds, fd_set *, readfds, fd_set *, writefds, \
667 fd_set *, exceptfds, struct timespec *, timeout, void *, sig)
859e8a89 668#endif
e5ce9688 669#if defined(TARGET_NR_ppoll) || defined(TARGET_NR_ppoll_time64)
a6130237
PM
670safe_syscall5(int, ppoll, struct pollfd *, ufds, unsigned int, nfds,
671 struct timespec *, tsp, const sigset_t *, sigmask,
672 size_t, sigsetsize)
859e8a89 673#endif
227f0214
PM
674safe_syscall6(int, epoll_pwait, int, epfd, struct epoll_event *, events,
675 int, maxevents, int, timeout, const sigset_t *, sigmask,
676 size_t, sigsetsize)
14690296 677#if defined(__NR_futex)
d509eeb1
PM
678safe_syscall6(int,futex,int *,uaddr,int,op,int,val, \
679 const struct timespec *,timeout,int *,uaddr2,int,val3)
859e8a89 680#endif
14690296
AF
681#if defined(__NR_futex_time64)
682safe_syscall6(int,futex_time64,int *,uaddr,int,op,int,val, \
683 const struct timespec *,timeout,int *,uaddr2,int,val3)
684#endif
2fe4fba1 685safe_syscall2(int, rt_sigsuspend, sigset_t *, newset, size_t, sigsetsize)
bef653d9
PM
686safe_syscall2(int, kill, pid_t, pid, int, sig)
687safe_syscall2(int, tkill, int, tid, int, sig)
688safe_syscall3(int, tgkill, int, tgid, int, pid, int, sig)
918c03ed
PM
689safe_syscall3(ssize_t, readv, int, fd, const struct iovec *, iov, int, iovcnt)
690safe_syscall3(ssize_t, writev, int, fd, const struct iovec *, iov, int, iovcnt)
0f26386c
DJ
691safe_syscall5(ssize_t, preadv, int, fd, const struct iovec *, iov, int, iovcnt,
692 unsigned long, pos_l, unsigned long, pos_h)
f8d00fba
DJ
693safe_syscall5(ssize_t, pwritev, int, fd, const struct iovec *, iov, int, iovcnt,
694 unsigned long, pos_l, unsigned long, pos_h)
2a3c7619
PM
695safe_syscall3(int, connect, int, fd, const struct sockaddr *, addr,
696 socklen_t, addrlen)
66687530
PM
697safe_syscall6(ssize_t, sendto, int, fd, const void *, buf, size_t, len,
698 int, flags, const struct sockaddr *, addr, socklen_t, addrlen)
699safe_syscall6(ssize_t, recvfrom, int, fd, void *, buf, size_t, len,
700 int, flags, struct sockaddr *, addr, socklen_t *, addrlen)
701safe_syscall3(ssize_t, sendmsg, int, fd, const struct msghdr *, msg, int, flags)
702safe_syscall3(ssize_t, recvmsg, int, fd, struct msghdr *, msg, int, flags)
2a845989 703safe_syscall2(int, flock, int, fd, int, operation)
ddcbde15 704#if defined(TARGET_NR_rt_sigtimedwait) || defined(TARGET_NR_rt_sigtimedwait_time64)
b3f82330
PM
705safe_syscall4(int, rt_sigtimedwait, const sigset_t *, these, siginfo_t *, uinfo,
706 const struct timespec *, uts, size_t, sigsetsize)
859e8a89 707#endif
ff6dc130
PM
708safe_syscall4(int, accept4, int, fd, struct sockaddr *, addr, socklen_t *, len,
709 int, flags)
859e8a89 710#if defined(TARGET_NR_nanosleep)
9e518226
PM
711safe_syscall2(int, nanosleep, const struct timespec *, req,
712 struct timespec *, rem)
859e8a89 713#endif
6ac03b2c
FB
714#if defined(TARGET_NR_clock_nanosleep) || \
715 defined(TARGET_NR_clock_nanosleep_time64)
9e518226
PM
716safe_syscall4(int, clock_nanosleep, const clockid_t, clock, int, flags,
717 const struct timespec *, req, struct timespec *, rem)
718#endif
524fa340 719#ifdef __NR_ipc
d8c08b1e
MK
720#ifdef __s390x__
721safe_syscall5(int, ipc, int, call, long, first, long, second, long, third,
722 void *, ptr)
723#else
89f9fe44
PM
724safe_syscall6(int, ipc, int, call, long, first, long, second, long, third,
725 void *, ptr, long, fifth)
86e63695 726#endif
d8c08b1e 727#endif
86e63695
LV
728#ifdef __NR_msgsnd
729safe_syscall4(int, msgsnd, int, msgid, const void *, msgp, size_t, sz,
730 int, flags)
86e63695
LV
731#endif
732#ifdef __NR_msgrcv
733safe_syscall5(int, msgrcv, int, msgid, void *, msgp, size_t, sz,
734 long, msgtype, int, flags)
86e63695
LV
735#endif
736#ifdef __NR_semtimedop
737safe_syscall4(int, semtimedop, int, semid, struct sembuf *, tsops,
738 unsigned, nsops, const struct timespec *, timeout)
89f9fe44 739#endif
d107e375
FB
740#if defined(TARGET_NR_mq_timedsend) || \
741 defined(TARGET_NR_mq_timedsend_time64)
d40ecd66
PM
742safe_syscall5(int, mq_timedsend, int, mqdes, const char *, msg_ptr,
743 size_t, len, unsigned, prio, const struct timespec *, timeout)
859e8a89 744#endif
d107e375
FB
745#if defined(TARGET_NR_mq_timedreceive) || \
746 defined(TARGET_NR_mq_timedreceive_time64)
d40ecd66
PM
747safe_syscall5(int, mq_timedreceive, int, mqdes, char *, msg_ptr,
748 size_t, len, unsigned *, prio, const struct timespec *, timeout)
749#endif
84946457
AS
750#if defined(TARGET_NR_copy_file_range) && defined(__NR_copy_file_range)
751safe_syscall6(ssize_t, copy_file_range, int, infd, loff_t *, pinoff,
752 int, outfd, loff_t *, poutoff, size_t, length,
753 unsigned int, flags)
754#endif
755
49ca6f3e
PM
756/* We do ioctl like this rather than via safe_syscall3 to preserve the
757 * "third argument might be integer or pointer or not present" behaviour of
758 * the libc function.
759 */
760#define safe_ioctl(...) safe_syscall(__NR_ioctl, __VA_ARGS__)
435da5e7
PM
761/* Similarly for fcntl. Note that callers must always:
762 * pass the F_GETLK64 etc constants rather than the unsuffixed F_GETLK
763 * use the flock64 struct rather than unsuffixed flock
764 * This will then work and use a 64-bit offset for both 32-bit and 64-bit hosts.
765 */
766#ifdef __NR_fcntl64
767#define safe_fcntl(...) safe_syscall(__NR_fcntl64, __VA_ARGS__)
768#else
769#define safe_fcntl(...) safe_syscall(__NR_fcntl, __VA_ARGS__)
770#endif
50afd02b 771
8289d112
PB
772static inline int host_to_target_sock_type(int host_type)
773{
774 int target_type;
775
776 switch (host_type & 0xf /* SOCK_TYPE_MASK */) {
777 case SOCK_DGRAM:
778 target_type = TARGET_SOCK_DGRAM;
779 break;
780 case SOCK_STREAM:
781 target_type = TARGET_SOCK_STREAM;
782 break;
783 default:
784 target_type = host_type & 0xf /* SOCK_TYPE_MASK */;
785 break;
786 }
787
788#if defined(SOCK_CLOEXEC)
789 if (host_type & SOCK_CLOEXEC) {
790 target_type |= TARGET_SOCK_CLOEXEC;
791 }
792#endif
793
794#if defined(SOCK_NONBLOCK)
795 if (host_type & SOCK_NONBLOCK) {
796 target_type |= TARGET_SOCK_NONBLOCK;
797 }
798#endif
799
800 return target_type;
801}
802
dfe49864 803static abi_ulong target_brk, initial_target_brk;
31e31b8a 804
992f48a0 805void target_set_brk(abi_ulong new_brk)
31e31b8a 806{
d28b3c90 807 target_brk = TARGET_PAGE_ALIGN(new_brk);
dfe49864 808 initial_target_brk = target_brk;
31e31b8a
FB
809}
810
0da46a6e 811/* do_brk() must return target values and target errnos. */
86f04735 812abi_long do_brk(abi_ulong brk_val)
31e31b8a 813{
992f48a0 814 abi_long mapped_addr;
2aea137a
AO
815 abi_ulong new_brk;
816 abi_ulong old_brk;
31e31b8a 817
ee1bf83d
RH
818 /* brk pointers are always untagged */
819
dfe49864
HD
820 /* do not allow to shrink below initial brk value */
821 if (brk_val < initial_target_brk) {
cb9d5d1f 822 return target_brk;
dfe49864
HD
823 }
824
86f04735 825 new_brk = TARGET_PAGE_ALIGN(brk_val);
2aea137a 826 old_brk = TARGET_PAGE_ALIGN(target_brk);
86f04735 827
2aea137a
AO
828 /* new and old target_brk might be on the same page */
829 if (new_brk == old_brk) {
86f04735 830 target_brk = brk_val;
7ab240ad 831 return target_brk;
4d1de87c 832 }
3b46e624 833
86f04735 834 /* Release heap if necesary */
2aea137a
AO
835 if (new_brk < old_brk) {
836 target_munmap(new_brk, old_brk - new_brk);
86f04735
HD
837
838 target_brk = brk_val;
839 return target_brk;
31e31b8a
FB
840 }
841
2aea137a
AO
842 mapped_addr = target_mmap(old_brk, new_brk - old_brk,
843 PROT_READ | PROT_WRITE,
844 MAP_FIXED_NOREPLACE | MAP_ANON | MAP_PRIVATE,
845 -1, 0);
70afc343 846
2aea137a 847 if (mapped_addr == old_brk) {
86f04735 848 target_brk = brk_val;
00faf08c 849 return target_brk;
00faf08c 850 }
7ab240ad 851
7dd46c02
RH
852#if defined(TARGET_ALPHA)
853 /* We (partially) emulate OSF/1 on Alpha, which requires we
854 return a proper errno, not an unchanged brk value. */
00faf08c 855 return -TARGET_ENOMEM;
7dd46c02 856#endif
00faf08c 857 /* For everything else, return the previous break. */
7ab240ad 858 return target_brk;
31e31b8a
FB
859}
860
859e8a89 861#if defined(TARGET_NR_select) || defined(TARGET_NR__newselect) || \
e5ce9688 862 defined(TARGET_NR_pselect6) || defined(TARGET_NR_pselect6_time64)
26edcf41
TS
863static inline abi_long copy_from_user_fdset(fd_set *fds,
864 abi_ulong target_fds_addr,
865 int n)
31e31b8a 866{
26edcf41
TS
867 int i, nw, j, k;
868 abi_ulong b, *target_fds;
869
b1b2db29 870 nw = DIV_ROUND_UP(n, TARGET_ABI_BITS);
26edcf41
TS
871 if (!(target_fds = lock_user(VERIFY_READ,
872 target_fds_addr,
873 sizeof(abi_ulong) * nw,
874 1)))
875 return -TARGET_EFAULT;
876
877 FD_ZERO(fds);
878 k = 0;
879 for (i = 0; i < nw; i++) {
880 /* grab the abi_ulong */
881 __get_user(b, &target_fds[i]);
882 for (j = 0; j < TARGET_ABI_BITS; j++) {
883 /* check the bit inside the abi_ulong */
884 if ((b >> j) & 1)
885 FD_SET(k, fds);
886 k++;
31e31b8a 887 }
31e31b8a 888 }
26edcf41
TS
889
890 unlock_user(target_fds, target_fds_addr, 0);
891
892 return 0;
31e31b8a
FB
893}
894
055e0906
MF
895static inline abi_ulong copy_from_user_fdset_ptr(fd_set *fds, fd_set **fds_ptr,
896 abi_ulong target_fds_addr,
897 int n)
898{
899 if (target_fds_addr) {
900 if (copy_from_user_fdset(fds, target_fds_addr, n))
901 return -TARGET_EFAULT;
902 *fds_ptr = fds;
903 } else {
904 *fds_ptr = NULL;
905 }
906 return 0;
907}
908
26edcf41
TS
909static inline abi_long copy_to_user_fdset(abi_ulong target_fds_addr,
910 const fd_set *fds,
911 int n)
31e31b8a 912{
31e31b8a 913 int i, nw, j, k;
992f48a0 914 abi_long v;
26edcf41 915 abi_ulong *target_fds;
31e31b8a 916
b1b2db29 917 nw = DIV_ROUND_UP(n, TARGET_ABI_BITS);
26edcf41
TS
918 if (!(target_fds = lock_user(VERIFY_WRITE,
919 target_fds_addr,
920 sizeof(abi_ulong) * nw,
921 0)))
922 return -TARGET_EFAULT;
923
924 k = 0;
925 for (i = 0; i < nw; i++) {
926 v = 0;
927 for (j = 0; j < TARGET_ABI_BITS; j++) {
9ab709be 928 v |= ((abi_ulong)(FD_ISSET(k, fds) != 0) << j);
26edcf41 929 k++;
31e31b8a 930 }
26edcf41 931 __put_user(v, &target_fds[i]);
31e31b8a 932 }
26edcf41
TS
933
934 unlock_user(target_fds, target_fds_addr, sizeof(abi_ulong) * nw);
935
936 return 0;
31e31b8a 937}
859e8a89 938#endif
31e31b8a 939
c596ed17
FB
940#if defined(__alpha__)
941#define HOST_HZ 1024
942#else
943#define HOST_HZ 100
944#endif
945
992f48a0 946static inline abi_long host_to_target_clock_t(long ticks)
c596ed17
FB
947{
948#if HOST_HZ == TARGET_HZ
949 return ticks;
950#else
951 return ((int64_t)ticks * TARGET_HZ) / HOST_HZ;
952#endif
953}
954
579a97f7
FB
955static inline abi_long host_to_target_rusage(abi_ulong target_addr,
956 const struct rusage *rusage)
b409186b 957{
53a5960a
PB
958 struct target_rusage *target_rusage;
959
579a97f7
FB
960 if (!lock_user_struct(VERIFY_WRITE, target_rusage, target_addr, 0))
961 return -TARGET_EFAULT;
cbb21eed
MB
962 target_rusage->ru_utime.tv_sec = tswapal(rusage->ru_utime.tv_sec);
963 target_rusage->ru_utime.tv_usec = tswapal(rusage->ru_utime.tv_usec);
964 target_rusage->ru_stime.tv_sec = tswapal(rusage->ru_stime.tv_sec);
965 target_rusage->ru_stime.tv_usec = tswapal(rusage->ru_stime.tv_usec);
966 target_rusage->ru_maxrss = tswapal(rusage->ru_maxrss);
967 target_rusage->ru_ixrss = tswapal(rusage->ru_ixrss);
968 target_rusage->ru_idrss = tswapal(rusage->ru_idrss);
969 target_rusage->ru_isrss = tswapal(rusage->ru_isrss);
970 target_rusage->ru_minflt = tswapal(rusage->ru_minflt);
971 target_rusage->ru_majflt = tswapal(rusage->ru_majflt);
972 target_rusage->ru_nswap = tswapal(rusage->ru_nswap);
973 target_rusage->ru_inblock = tswapal(rusage->ru_inblock);
974 target_rusage->ru_oublock = tswapal(rusage->ru_oublock);
975 target_rusage->ru_msgsnd = tswapal(rusage->ru_msgsnd);
976 target_rusage->ru_msgrcv = tswapal(rusage->ru_msgrcv);
977 target_rusage->ru_nsignals = tswapal(rusage->ru_nsignals);
978 target_rusage->ru_nvcsw = tswapal(rusage->ru_nvcsw);
979 target_rusage->ru_nivcsw = tswapal(rusage->ru_nivcsw);
53a5960a 980 unlock_user_struct(target_rusage, target_addr, 1);
579a97f7
FB
981
982 return 0;
b409186b
FB
983}
984
859e8a89 985#ifdef TARGET_NR_setrlimit
cbb21eed 986static inline rlim_t target_to_host_rlim(abi_ulong target_rlim)
81bbe906 987{
cbb21eed 988 abi_ulong target_rlim_swap;
95b33b2f
WT
989 rlim_t result;
990
cbb21eed
MB
991 target_rlim_swap = tswapal(target_rlim);
992 if (target_rlim_swap == TARGET_RLIM_INFINITY)
993 return RLIM_INFINITY;
994
995 result = target_rlim_swap;
996 if (target_rlim_swap != (rlim_t)result)
997 return RLIM_INFINITY;
95b33b2f
WT
998
999 return result;
81bbe906 1000}
859e8a89 1001#endif
81bbe906 1002
859e8a89 1003#if defined(TARGET_NR_getrlimit) || defined(TARGET_NR_ugetrlimit)
cbb21eed 1004static inline abi_ulong host_to_target_rlim(rlim_t rlim)
81bbe906 1005{
cbb21eed
MB
1006 abi_ulong target_rlim_swap;
1007 abi_ulong result;
95b33b2f 1008
cbb21eed 1009 if (rlim == RLIM_INFINITY || rlim != (abi_long)rlim)
95b33b2f 1010 target_rlim_swap = TARGET_RLIM_INFINITY;
81bbe906 1011 else
95b33b2f 1012 target_rlim_swap = rlim;
cbb21eed 1013 result = tswapal(target_rlim_swap);
95b33b2f
WT
1014
1015 return result;
81bbe906 1016}
859e8a89 1017#endif
81bbe906 1018
e22b7015
WT
1019static inline int target_to_host_resource(int code)
1020{
1021 switch (code) {
1022 case TARGET_RLIMIT_AS:
1023 return RLIMIT_AS;
1024 case TARGET_RLIMIT_CORE:
1025 return RLIMIT_CORE;
1026 case TARGET_RLIMIT_CPU:
1027 return RLIMIT_CPU;
1028 case TARGET_RLIMIT_DATA:
1029 return RLIMIT_DATA;
1030 case TARGET_RLIMIT_FSIZE:
1031 return RLIMIT_FSIZE;
1032 case TARGET_RLIMIT_LOCKS:
1033 return RLIMIT_LOCKS;
1034 case TARGET_RLIMIT_MEMLOCK:
1035 return RLIMIT_MEMLOCK;
1036 case TARGET_RLIMIT_MSGQUEUE:
1037 return RLIMIT_MSGQUEUE;
1038 case TARGET_RLIMIT_NICE:
1039 return RLIMIT_NICE;
1040 case TARGET_RLIMIT_NOFILE:
1041 return RLIMIT_NOFILE;
1042 case TARGET_RLIMIT_NPROC:
1043 return RLIMIT_NPROC;
1044 case TARGET_RLIMIT_RSS:
1045 return RLIMIT_RSS;
1046 case TARGET_RLIMIT_RTPRIO:
1047 return RLIMIT_RTPRIO;
c3a28d71 1048#ifdef RLIMIT_RTTIME
244fd083
SB
1049 case TARGET_RLIMIT_RTTIME:
1050 return RLIMIT_RTTIME;
c3a28d71 1051#endif
e22b7015
WT
1052 case TARGET_RLIMIT_SIGPENDING:
1053 return RLIMIT_SIGPENDING;
1054 case TARGET_RLIMIT_STACK:
1055 return RLIMIT_STACK;
1056 default:
1057 return code;
1058 }
1059}
1060
788f5ec4
TS
1061static inline abi_long copy_from_user_timeval(struct timeval *tv,
1062 abi_ulong target_tv_addr)
31e31b8a 1063{
53a5960a
PB
1064 struct target_timeval *target_tv;
1065
6d5d5dde 1066 if (!lock_user_struct(VERIFY_READ, target_tv, target_tv_addr, 1)) {
579a97f7 1067 return -TARGET_EFAULT;
6d5d5dde 1068 }
788f5ec4
TS
1069
1070 __get_user(tv->tv_sec, &target_tv->tv_sec);
1071 __get_user(tv->tv_usec, &target_tv->tv_usec);
1072
1073 unlock_user_struct(target_tv, target_tv_addr, 0);
579a97f7
FB
1074
1075 return 0;
31e31b8a
FB
1076}
1077
788f5ec4
TS
1078static inline abi_long copy_to_user_timeval(abi_ulong target_tv_addr,
1079 const struct timeval *tv)
31e31b8a 1080{
53a5960a
PB
1081 struct target_timeval *target_tv;
1082
6d5d5dde
DB
1083 if (!lock_user_struct(VERIFY_WRITE, target_tv, target_tv_addr, 0)) {
1084 return -TARGET_EFAULT;
1085 }
1086
1087 __put_user(tv->tv_sec, &target_tv->tv_sec);
1088 __put_user(tv->tv_usec, &target_tv->tv_usec);
1089
1090 unlock_user_struct(target_tv, target_tv_addr, 1);
1091
1092 return 0;
1093}
1094
6ac03b2c
FB
1095#if defined(TARGET_NR_clock_adjtime64) && defined(CONFIG_CLOCK_ADJTIME)
1096static inline abi_long copy_from_user_timeval64(struct timeval *tv,
1097 abi_ulong target_tv_addr)
1098{
1099 struct target__kernel_sock_timeval *target_tv;
1100
1101 if (!lock_user_struct(VERIFY_READ, target_tv, target_tv_addr, 1)) {
1102 return -TARGET_EFAULT;
1103 }
1104
1105 __get_user(tv->tv_sec, &target_tv->tv_sec);
1106 __get_user(tv->tv_usec, &target_tv->tv_usec);
1107
1108 unlock_user_struct(target_tv, target_tv_addr, 0);
1109
1110 return 0;
1111}
1112#endif
1113
6d5d5dde 1114static inline abi_long copy_to_user_timeval64(abi_ulong target_tv_addr,
6ac03b2c 1115 const struct timeval *tv)
6d5d5dde
DB
1116{
1117 struct target__kernel_sock_timeval *target_tv;
1118
1119 if (!lock_user_struct(VERIFY_WRITE, target_tv, target_tv_addr, 0)) {
579a97f7 1120 return -TARGET_EFAULT;
6d5d5dde 1121 }
788f5ec4
TS
1122
1123 __put_user(tv->tv_sec, &target_tv->tv_sec);
1124 __put_user(tv->tv_usec, &target_tv->tv_usec);
1125
1126 unlock_user_struct(target_tv, target_tv_addr, 1);
579a97f7
FB
1127
1128 return 0;
31e31b8a
FB
1129}
1130
859e8a89
AF
1131#if defined(TARGET_NR_futex) || \
1132 defined(TARGET_NR_rt_sigtimedwait) || \
1133 defined(TARGET_NR_pselect6) || defined(TARGET_NR_pselect6) || \
1134 defined(TARGET_NR_nanosleep) || defined(TARGET_NR_clock_settime) || \
1135 defined(TARGET_NR_utimensat) || defined(TARGET_NR_mq_timedsend) || \
d8c08b1e 1136 defined(TARGET_NR_mq_timedreceive) || defined(TARGET_NR_ipc) || \
2c86c90f
FB
1137 defined(TARGET_NR_semop) || defined(TARGET_NR_semtimedop) || \
1138 defined(TARGET_NR_timer_settime) || \
1139 (defined(TARGET_NR_timerfd_settime) && defined(CONFIG_TIMERFD))
6d5d5dde
DB
1140static inline abi_long target_to_host_timespec(struct timespec *host_ts,
1141 abi_ulong target_addr)
1142{
1143 struct target_timespec *target_ts;
1144
1145 if (!lock_user_struct(VERIFY_READ, target_ts, target_addr, 1)) {
1146 return -TARGET_EFAULT;
1147 }
1148 __get_user(host_ts->tv_sec, &target_ts->tv_sec);
1149 __get_user(host_ts->tv_nsec, &target_ts->tv_nsec);
1150 unlock_user_struct(target_ts, target_addr, 0);
1151 return 0;
1152}
859e8a89 1153#endif
6d5d5dde 1154
828cb3a1
FB
1155#if defined(TARGET_NR_clock_settime64) || defined(TARGET_NR_futex_time64) || \
1156 defined(TARGET_NR_timer_settime64) || \
d107e375
FB
1157 defined(TARGET_NR_mq_timedsend_time64) || \
1158 defined(TARGET_NR_mq_timedreceive_time64) || \
6ac03b2c 1159 (defined(TARGET_NR_timerfd_settime64) && defined(CONFIG_TIMERFD)) || \
ddcbde15 1160 defined(TARGET_NR_clock_nanosleep_time64) || \
cac46eb0
FB
1161 defined(TARGET_NR_rt_sigtimedwait_time64) || \
1162 defined(TARGET_NR_utimensat) || \
1163 defined(TARGET_NR_utimensat_time64) || \
e5ce9688
FB
1164 defined(TARGET_NR_semtimedop_time64) || \
1165 defined(TARGET_NR_pselect6_time64) || defined(TARGET_NR_ppoll_time64)
c6c8d102
AF
1166static inline abi_long target_to_host_timespec64(struct timespec *host_ts,
1167 abi_ulong target_addr)
1168{
1169 struct target__kernel_timespec *target_ts;
1170
1171 if (!lock_user_struct(VERIFY_READ, target_ts, target_addr, 1)) {
1172 return -TARGET_EFAULT;
1173 }
1174 __get_user(host_ts->tv_sec, &target_ts->tv_sec);
1175 __get_user(host_ts->tv_nsec, &target_ts->tv_nsec);
00576757
LV
1176 /* in 32bit mode, this drops the padding */
1177 host_ts->tv_nsec = (long)(abi_long)host_ts->tv_nsec;
c6c8d102
AF
1178 unlock_user_struct(target_ts, target_addr, 0);
1179 return 0;
1180}
1181#endif
1182
6d5d5dde
DB
1183static inline abi_long host_to_target_timespec(abi_ulong target_addr,
1184 struct timespec *host_ts)
1185{
1186 struct target_timespec *target_ts;
1187
1188 if (!lock_user_struct(VERIFY_WRITE, target_ts, target_addr, 0)) {
1189 return -TARGET_EFAULT;
1190 }
1191 __put_user(host_ts->tv_sec, &target_ts->tv_sec);
1192 __put_user(host_ts->tv_nsec, &target_ts->tv_nsec);
1193 unlock_user_struct(target_ts, target_addr, 1);
1194 return 0;
1195}
1196
1197static inline abi_long host_to_target_timespec64(abi_ulong target_addr,
1198 struct timespec *host_ts)
1199{
1200 struct target__kernel_timespec *target_ts;
1201
1202 if (!lock_user_struct(VERIFY_WRITE, target_ts, target_addr, 0)) {
1203 return -TARGET_EFAULT;
1204 }
1205 __put_user(host_ts->tv_sec, &target_ts->tv_sec);
1206 __put_user(host_ts->tv_nsec, &target_ts->tv_nsec);
1207 unlock_user_struct(target_ts, target_addr, 1);
1208 return 0;
1209}
1210
a52f5f87
RH
1211#if defined(TARGET_NR_gettimeofday)
1212static inline abi_long copy_to_user_timezone(abi_ulong target_tz_addr,
1213 struct timezone *tz)
1214{
1215 struct target_timezone *target_tz;
1216
1217 if (!lock_user_struct(VERIFY_WRITE, target_tz, target_tz_addr, 1)) {
1218 return -TARGET_EFAULT;
1219 }
1220
1221 __put_user(tz->tz_minuteswest, &target_tz->tz_minuteswest);
1222 __put_user(tz->tz_dsttime, &target_tz->tz_dsttime);
1223
1224 unlock_user_struct(target_tz, target_tz_addr, 1);
1225
1226 return 0;
1227}
1228#endif
1229
859e8a89 1230#if defined(TARGET_NR_settimeofday)
ef4467e9
PB
1231static inline abi_long copy_from_user_timezone(struct timezone *tz,
1232 abi_ulong target_tz_addr)
1233{
1234 struct target_timezone *target_tz;
1235
1236 if (!lock_user_struct(VERIFY_READ, target_tz, target_tz_addr, 1)) {
1237 return -TARGET_EFAULT;
1238 }
1239
1240 __get_user(tz->tz_minuteswest, &target_tz->tz_minuteswest);
1241 __get_user(tz->tz_dsttime, &target_tz->tz_dsttime);
1242
1243 unlock_user_struct(target_tz, target_tz_addr, 0);
1244
1245 return 0;
1246}
859e8a89 1247#endif
ef4467e9 1248
8ec9cf89
NF
1249#if defined(TARGET_NR_mq_open) && defined(__NR_mq_open)
1250#include <mqueue.h>
1251
24e1003a
AJ
1252static inline abi_long copy_from_user_mq_attr(struct mq_attr *attr,
1253 abi_ulong target_mq_attr_addr)
1254{
1255 struct target_mq_attr *target_mq_attr;
1256
1257 if (!lock_user_struct(VERIFY_READ, target_mq_attr,
1258 target_mq_attr_addr, 1))
1259 return -TARGET_EFAULT;
1260
1261 __get_user(attr->mq_flags, &target_mq_attr->mq_flags);
1262 __get_user(attr->mq_maxmsg, &target_mq_attr->mq_maxmsg);
1263 __get_user(attr->mq_msgsize, &target_mq_attr->mq_msgsize);
1264 __get_user(attr->mq_curmsgs, &target_mq_attr->mq_curmsgs);
1265
1266 unlock_user_struct(target_mq_attr, target_mq_attr_addr, 0);
1267
1268 return 0;
1269}
1270
1271static inline abi_long copy_to_user_mq_attr(abi_ulong target_mq_attr_addr,
1272 const struct mq_attr *attr)
1273{
1274 struct target_mq_attr *target_mq_attr;
1275
1276 if (!lock_user_struct(VERIFY_WRITE, target_mq_attr,
1277 target_mq_attr_addr, 0))
1278 return -TARGET_EFAULT;
1279
1280 __put_user(attr->mq_flags, &target_mq_attr->mq_flags);
1281 __put_user(attr->mq_maxmsg, &target_mq_attr->mq_maxmsg);
1282 __put_user(attr->mq_msgsize, &target_mq_attr->mq_msgsize);
1283 __put_user(attr->mq_curmsgs, &target_mq_attr->mq_curmsgs);
1284
1285 unlock_user_struct(target_mq_attr, target_mq_attr_addr, 1);
1286
1287 return 0;
1288}
8ec9cf89 1289#endif
31e31b8a 1290
055e0906 1291#if defined(TARGET_NR_select) || defined(TARGET_NR__newselect)
0da46a6e 1292/* do_select() must return target values and target errnos. */
992f48a0 1293static abi_long do_select(int n,
26edcf41
TS
1294 abi_ulong rfd_addr, abi_ulong wfd_addr,
1295 abi_ulong efd_addr, abi_ulong target_tv_addr)
31e31b8a
FB
1296{
1297 fd_set rfds, wfds, efds;
1298 fd_set *rfds_ptr, *wfds_ptr, *efds_ptr;
6df9d38d
PM
1299 struct timeval tv;
1300 struct timespec ts, *ts_ptr;
992f48a0 1301 abi_long ret;
31e31b8a 1302
055e0906
MF
1303 ret = copy_from_user_fdset_ptr(&rfds, &rfds_ptr, rfd_addr, n);
1304 if (ret) {
1305 return ret;
53a5960a 1306 }
055e0906
MF
1307 ret = copy_from_user_fdset_ptr(&wfds, &wfds_ptr, wfd_addr, n);
1308 if (ret) {
1309 return ret;
53a5960a 1310 }
055e0906
MF
1311 ret = copy_from_user_fdset_ptr(&efds, &efds_ptr, efd_addr, n);
1312 if (ret) {
1313 return ret;
53a5960a 1314 }
3b46e624 1315
26edcf41 1316 if (target_tv_addr) {
788f5ec4
TS
1317 if (copy_from_user_timeval(&tv, target_tv_addr))
1318 return -TARGET_EFAULT;
6df9d38d
PM
1319 ts.tv_sec = tv.tv_sec;
1320 ts.tv_nsec = tv.tv_usec * 1000;
1321 ts_ptr = &ts;
31e31b8a 1322 } else {
6df9d38d 1323 ts_ptr = NULL;
31e31b8a 1324 }
26edcf41 1325
6df9d38d
PM
1326 ret = get_errno(safe_pselect6(n, rfds_ptr, wfds_ptr, efds_ptr,
1327 ts_ptr, NULL));
53a5960a 1328
26edcf41
TS
1329 if (!is_error(ret)) {
1330 if (rfd_addr && copy_to_user_fdset(rfd_addr, &rfds, n))
1331 return -TARGET_EFAULT;
1332 if (wfd_addr && copy_to_user_fdset(wfd_addr, &wfds, n))
1333 return -TARGET_EFAULT;
1334 if (efd_addr && copy_to_user_fdset(efd_addr, &efds, n))
1335 return -TARGET_EFAULT;
31e31b8a 1336
6df9d38d
PM
1337 if (target_tv_addr) {
1338 tv.tv_sec = ts.tv_sec;
1339 tv.tv_usec = ts.tv_nsec / 1000;
1340 if (copy_to_user_timeval(target_tv_addr, &tv)) {
1341 return -TARGET_EFAULT;
1342 }
1343 }
31e31b8a 1344 }
579a97f7 1345
31e31b8a
FB
1346 return ret;
1347}
5457dc9e
LV
1348
1349#if defined(TARGET_WANT_OLD_SYS_SELECT)
1350static abi_long do_old_select(abi_ulong arg1)
1351{
1352 struct target_sel_arg_struct *sel;
1353 abi_ulong inp, outp, exp, tvp;
1354 long nsel;
1355
1356 if (!lock_user_struct(VERIFY_READ, sel, arg1, 1)) {
1357 return -TARGET_EFAULT;
1358 }
1359
1360 nsel = tswapal(sel->n);
1361 inp = tswapal(sel->inp);
1362 outp = tswapal(sel->outp);
1363 exp = tswapal(sel->exp);
1364 tvp = tswapal(sel->tvp);
1365
1366 unlock_user_struct(sel, arg1, 0);
1367
1368 return do_select(nsel, inp, outp, exp, tvp);
1369}
1370#endif
055e0906 1371#endif
31e31b8a 1372
e5ce9688
FB
1373#if defined(TARGET_NR_pselect6) || defined(TARGET_NR_pselect6_time64)
1374static abi_long do_pselect6(abi_long arg1, abi_long arg2, abi_long arg3,
1375 abi_long arg4, abi_long arg5, abi_long arg6,
1376 bool time64)
1377{
1378 abi_long rfd_addr, wfd_addr, efd_addr, n, ts_addr;
1379 fd_set rfds, wfds, efds;
1380 fd_set *rfds_ptr, *wfds_ptr, *efds_ptr;
1381 struct timespec ts, *ts_ptr;
1382 abi_long ret;
1383
1384 /*
1385 * The 6th arg is actually two args smashed together,
1386 * so we cannot use the C library.
1387 */
e5ce9688
FB
1388 struct {
1389 sigset_t *set;
1390 size_t size;
1391 } sig, *sig_ptr;
1392
1393 abi_ulong arg_sigset, arg_sigsize, *arg7;
e5ce9688
FB
1394
1395 n = arg1;
1396 rfd_addr = arg2;
1397 wfd_addr = arg3;
1398 efd_addr = arg4;
1399 ts_addr = arg5;
1400
1401 ret = copy_from_user_fdset_ptr(&rfds, &rfds_ptr, rfd_addr, n);
1402 if (ret) {
1403 return ret;
1404 }
1405 ret = copy_from_user_fdset_ptr(&wfds, &wfds_ptr, wfd_addr, n);
1406 if (ret) {
1407 return ret;
1408 }
1409 ret = copy_from_user_fdset_ptr(&efds, &efds_ptr, efd_addr, n);
1410 if (ret) {
1411 return ret;
1412 }
1413
1414 /*
1415 * This takes a timespec, and not a timeval, so we cannot
1416 * use the do_select() helper ...
1417 */
1418 if (ts_addr) {
1419 if (time64) {
1420 if (target_to_host_timespec64(&ts, ts_addr)) {
1421 return -TARGET_EFAULT;
1422 }
1423 } else {
1424 if (target_to_host_timespec(&ts, ts_addr)) {
1425 return -TARGET_EFAULT;
1426 }
1427 }
1428 ts_ptr = &ts;
1429 } else {
1430 ts_ptr = NULL;
1431 }
1432
1433 /* Extract the two packed args for the sigset */
cb226034 1434 sig_ptr = NULL;
e5ce9688 1435 if (arg6) {
e5ce9688
FB
1436 arg7 = lock_user(VERIFY_READ, arg6, sizeof(*arg7) * 2, 1);
1437 if (!arg7) {
1438 return -TARGET_EFAULT;
1439 }
1440 arg_sigset = tswapal(arg7[0]);
1441 arg_sigsize = tswapal(arg7[1]);
1442 unlock_user(arg7, arg6, 0);
1443
1444 if (arg_sigset) {
cb226034
RH
1445 ret = process_sigsuspend_mask(&sig.set, arg_sigset, arg_sigsize);
1446 if (ret != 0) {
1447 return ret;
e5ce9688 1448 }
cb226034
RH
1449 sig_ptr = &sig;
1450 sig.size = SIGSET_T_SIZE;
e5ce9688 1451 }
e5ce9688
FB
1452 }
1453
1454 ret = get_errno(safe_pselect6(n, rfds_ptr, wfds_ptr, efds_ptr,
1455 ts_ptr, sig_ptr));
1456
cb226034
RH
1457 if (sig_ptr) {
1458 finish_sigsuspend_mask(ret);
1459 }
1460
e5ce9688
FB
1461 if (!is_error(ret)) {
1462 if (rfd_addr && copy_to_user_fdset(rfd_addr, &rfds, n)) {
1463 return -TARGET_EFAULT;
1464 }
1465 if (wfd_addr && copy_to_user_fdset(wfd_addr, &wfds, n)) {
1466 return -TARGET_EFAULT;
1467 }
1468 if (efd_addr && copy_to_user_fdset(efd_addr, &efds, n)) {
1469 return -TARGET_EFAULT;
1470 }
1471 if (time64) {
1472 if (ts_addr && host_to_target_timespec64(ts_addr, &ts)) {
1473 return -TARGET_EFAULT;
1474 }
1475 } else {
1476 if (ts_addr && host_to_target_timespec(ts_addr, &ts)) {
1477 return -TARGET_EFAULT;
1478 }
1479 }
1480 }
1481 return ret;
1482}
1483#endif
1484
1485#if defined(TARGET_NR_poll) || defined(TARGET_NR_ppoll) || \
1486 defined(TARGET_NR_ppoll_time64)
1487static abi_long do_ppoll(abi_long arg1, abi_long arg2, abi_long arg3,
1488 abi_long arg4, abi_long arg5, bool ppoll, bool time64)
1489{
1490 struct target_pollfd *target_pfd;
1491 unsigned int nfds = arg2;
1492 struct pollfd *pfd;
1493 unsigned int i;
1494 abi_long ret;
1495
1496 pfd = NULL;
1497 target_pfd = NULL;
1498 if (nfds) {
1499 if (nfds > (INT_MAX / sizeof(struct target_pollfd))) {
1500 return -TARGET_EINVAL;
1501 }
1502 target_pfd = lock_user(VERIFY_WRITE, arg1,
1503 sizeof(struct target_pollfd) * nfds, 1);
1504 if (!target_pfd) {
1505 return -TARGET_EFAULT;
1506 }
1507
1508 pfd = alloca(sizeof(struct pollfd) * nfds);
1509 for (i = 0; i < nfds; i++) {
1510 pfd[i].fd = tswap32(target_pfd[i].fd);
1511 pfd[i].events = tswap16(target_pfd[i].events);
1512 }
1513 }
1514 if (ppoll) {
1515 struct timespec _timeout_ts, *timeout_ts = &_timeout_ts;
db36aa7d 1516 sigset_t *set = NULL;
e5ce9688
FB
1517
1518 if (arg3) {
1519 if (time64) {
1520 if (target_to_host_timespec64(timeout_ts, arg3)) {
1521 unlock_user(target_pfd, arg1, 0);
1522 return -TARGET_EFAULT;
1523 }
1524 } else {
1525 if (target_to_host_timespec(timeout_ts, arg3)) {
1526 unlock_user(target_pfd, arg1, 0);
1527 return -TARGET_EFAULT;
1528 }
1529 }
1530 } else {
1531 timeout_ts = NULL;
1532 }
1533
1534 if (arg4) {
db36aa7d
RH
1535 ret = process_sigsuspend_mask(&set, arg4, arg5);
1536 if (ret != 0) {
e5ce9688 1537 unlock_user(target_pfd, arg1, 0);
db36aa7d 1538 return ret;
e5ce9688 1539 }
e5ce9688
FB
1540 }
1541
1542 ret = get_errno(safe_ppoll(pfd, nfds, timeout_ts,
1543 set, SIGSET_T_SIZE));
1544
db36aa7d
RH
1545 if (set) {
1546 finish_sigsuspend_mask(ret);
1547 }
e5ce9688
FB
1548 if (!is_error(ret) && arg3) {
1549 if (time64) {
1550 if (host_to_target_timespec64(arg3, timeout_ts)) {
1551 return -TARGET_EFAULT;
1552 }
1553 } else {
1554 if (host_to_target_timespec(arg3, timeout_ts)) {
1555 return -TARGET_EFAULT;
1556 }
1557 }
1558 }
e5ce9688
FB
1559 } else {
1560 struct timespec ts, *pts;
1561
1562 if (arg3 >= 0) {
1563 /* Convert ms to secs, ns */
1564 ts.tv_sec = arg3 / 1000;
1565 ts.tv_nsec = (arg3 % 1000) * 1000000LL;
1566 pts = &ts;
1567 } else {
1568 /* -ve poll() timeout means "infinite" */
1569 pts = NULL;
1570 }
1571 ret = get_errno(safe_ppoll(pfd, nfds, pts, NULL, 0));
1572 }
1573
1574 if (!is_error(ret)) {
1575 for (i = 0; i < nfds; i++) {
1576 target_pfd[i].revents = tswap16(pfd[i].revents);
1577 }
1578 }
1579 unlock_user(target_pfd, arg1, sizeof(struct target_pollfd) * nfds);
1580 return ret;
1581}
1582#endif
1583
a0939b89 1584static abi_long do_pipe(CPUArchState *cpu_env, abi_ulong pipedes,
fb41a66e 1585 int flags, int is_pipe2)
099d6b0f
RV
1586{
1587 int host_pipe[2];
1588 abi_long ret;
499d8055 1589 ret = pipe2(host_pipe, flags);
099d6b0f
RV
1590
1591 if (is_error(ret))
1592 return get_errno(ret);
fb41a66e
RH
1593
1594 /* Several targets have special calling conventions for the original
1595 pipe syscall, but didn't replicate this into the pipe2 syscall. */
1596 if (!is_pipe2) {
1597#if defined(TARGET_ALPHA)
0effdc29 1598 cpu_env->ir[IR_A4] = host_pipe[1];
fb41a66e
RH
1599 return host_pipe[0];
1600#elif defined(TARGET_MIPS)
0effdc29 1601 cpu_env->active_tc.gpr[3] = host_pipe[1];
fb41a66e
RH
1602 return host_pipe[0];
1603#elif defined(TARGET_SH4)
0effdc29 1604 cpu_env->gregs[1] = host_pipe[1];
fb41a66e 1605 return host_pipe[0];
82f05b69 1606#elif defined(TARGET_SPARC)
0effdc29 1607 cpu_env->regwptr[1] = host_pipe[1];
82f05b69 1608 return host_pipe[0];
597c0212 1609#endif
fb41a66e
RH
1610 }
1611
099d6b0f 1612 if (put_user_s32(host_pipe[0], pipedes)
6f200f51 1613 || put_user_s32(host_pipe[1], pipedes + sizeof(abi_int)))
099d6b0f 1614 return -TARGET_EFAULT;
099d6b0f
RV
1615 return get_errno(ret);
1616}
1617
b975b83b
LL
1618static inline abi_long target_to_host_ip_mreq(struct ip_mreqn *mreqn,
1619 abi_ulong target_addr,
1620 socklen_t len)
1621{
1622 struct target_ip_mreqn *target_smreqn;
1623
1624 target_smreqn = lock_user(VERIFY_READ, target_addr, len, 1);
1625 if (!target_smreqn)
1626 return -TARGET_EFAULT;
1627 mreqn->imr_multiaddr.s_addr = target_smreqn->imr_multiaddr.s_addr;
1628 mreqn->imr_address.s_addr = target_smreqn->imr_address.s_addr;
1629 if (len == sizeof(struct target_ip_mreqn))
cbb21eed 1630 mreqn->imr_ifindex = tswapal(target_smreqn->imr_ifindex);
b975b83b
LL
1631 unlock_user(target_smreqn, target_addr, 0);
1632
1633 return 0;
1634}
1635
7b36f782 1636static inline abi_long target_to_host_sockaddr(int fd, struct sockaddr *addr,
579a97f7
FB
1637 abi_ulong target_addr,
1638 socklen_t len)
7854b056 1639{
607175e0
AJ
1640 const socklen_t unix_maxlen = sizeof (struct sockaddr_un);
1641 sa_family_t sa_family;
53a5960a
PB
1642 struct target_sockaddr *target_saddr;
1643
7b36f782
LV
1644 if (fd_trans_target_to_host_addr(fd)) {
1645 return fd_trans_target_to_host_addr(fd)(addr, target_addr, len);
1646 }
1647
579a97f7
FB
1648 target_saddr = lock_user(VERIFY_READ, target_addr, len, 1);
1649 if (!target_saddr)
1650 return -TARGET_EFAULT;
607175e0
AJ
1651
1652 sa_family = tswap16(target_saddr->sa_family);
1653
1654 /* Oops. The caller might send a incomplete sun_path; sun_path
1655 * must be terminated by \0 (see the manual page), but
1656 * unfortunately it is quite common to specify sockaddr_un
1657 * length as "strlen(x->sun_path)" while it should be
1658 * "strlen(...) + 1". We'll fix that here if needed.
1659 * Linux kernel has a similar feature.
1660 */
1661
1662 if (sa_family == AF_UNIX) {
1663 if (len < unix_maxlen && len > 0) {
1664 char *cp = (char*)target_saddr;
1665
1666 if ( cp[len-1] && !cp[len] )
1667 len++;
1668 }
1669 if (len > unix_maxlen)
1670 len = unix_maxlen;
1671 }
1672
53a5960a 1673 memcpy(addr, target_saddr, len);
607175e0 1674 addr->sa_family = sa_family;
6c5b5645
LV
1675 if (sa_family == AF_NETLINK) {
1676 struct sockaddr_nl *nladdr;
1677
1678 nladdr = (struct sockaddr_nl *)addr;
1679 nladdr->nl_pid = tswap32(nladdr->nl_pid);
1680 nladdr->nl_groups = tswap32(nladdr->nl_groups);
1681 } else if (sa_family == AF_PACKET) {
33a29b51
JT
1682 struct target_sockaddr_ll *lladdr;
1683
1684 lladdr = (struct target_sockaddr_ll *)addr;
1685 lladdr->sll_ifindex = tswap32(lladdr->sll_ifindex);
1686 lladdr->sll_hatype = tswap16(lladdr->sll_hatype);
44cf6731
MM
1687 } else if (sa_family == AF_INET6) {
1688 struct sockaddr_in6 *in6addr;
1689
1690 in6addr = (struct sockaddr_in6 *)addr;
1691 in6addr->sin6_scope_id = tswap32(in6addr->sin6_scope_id);
33a29b51 1692 }
53a5960a 1693 unlock_user(target_saddr, target_addr, 0);
579a97f7
FB
1694
1695 return 0;
7854b056
FB
1696}
1697
579a97f7
FB
1698static inline abi_long host_to_target_sockaddr(abi_ulong target_addr,
1699 struct sockaddr *addr,
1700 socklen_t len)
7854b056 1701{
53a5960a
PB
1702 struct target_sockaddr *target_saddr;
1703
a1e22192
PM
1704 if (len == 0) {
1705 return 0;
1706 }
6860710c 1707 assert(addr);
a1e22192 1708
579a97f7
FB
1709 target_saddr = lock_user(VERIFY_WRITE, target_addr, len, 0);
1710 if (!target_saddr)
1711 return -TARGET_EFAULT;
53a5960a 1712 memcpy(target_saddr, addr, len);
a1e22192
PM
1713 if (len >= offsetof(struct target_sockaddr, sa_family) +
1714 sizeof(target_saddr->sa_family)) {
1715 target_saddr->sa_family = tswap16(addr->sa_family);
1716 }
a47401bc
PMD
1717 if (addr->sa_family == AF_NETLINK &&
1718 len >= sizeof(struct target_sockaddr_nl)) {
1719 struct target_sockaddr_nl *target_nl =
1720 (struct target_sockaddr_nl *)target_saddr;
6c5b5645
LV
1721 target_nl->nl_pid = tswap32(target_nl->nl_pid);
1722 target_nl->nl_groups = tswap32(target_nl->nl_groups);
a82ea939
LV
1723 } else if (addr->sa_family == AF_PACKET) {
1724 struct sockaddr_ll *target_ll = (struct sockaddr_ll *)target_saddr;
1725 target_ll->sll_ifindex = tswap32(target_ll->sll_ifindex);
1726 target_ll->sll_hatype = tswap16(target_ll->sll_hatype);
ee1ac3a1
HD
1727 } else if (addr->sa_family == AF_INET6 &&
1728 len >= sizeof(struct target_sockaddr_in6)) {
1729 struct target_sockaddr_in6 *target_in6 =
1730 (struct target_sockaddr_in6 *)target_saddr;
1731 target_in6->sin6_scope_id = tswap16(target_in6->sin6_scope_id);
6c5b5645 1732 }
53a5960a 1733 unlock_user(target_saddr, target_addr, len);
579a97f7
FB
1734
1735 return 0;
7854b056
FB
1736}
1737
5a4a898d
FB
1738static inline abi_long target_to_host_cmsg(struct msghdr *msgh,
1739 struct target_msghdr *target_msgh)
7854b056
FB
1740{
1741 struct cmsghdr *cmsg = CMSG_FIRSTHDR(msgh);
5a4a898d
FB
1742 abi_long msg_controllen;
1743 abi_ulong target_cmsg_addr;
ee104587 1744 struct target_cmsghdr *target_cmsg, *target_cmsg_start;
7854b056 1745 socklen_t space = 0;
5a4a898d 1746
cbb21eed 1747 msg_controllen = tswapal(target_msgh->msg_controllen);
5a4a898d
FB
1748 if (msg_controllen < sizeof (struct target_cmsghdr))
1749 goto the_end;
cbb21eed 1750 target_cmsg_addr = tswapal(target_msgh->msg_control);
5a4a898d 1751 target_cmsg = lock_user(VERIFY_READ, target_cmsg_addr, msg_controllen, 1);
ee104587 1752 target_cmsg_start = target_cmsg;
5a4a898d
FB
1753 if (!target_cmsg)
1754 return -TARGET_EFAULT;
7854b056
FB
1755
1756 while (cmsg && target_cmsg) {
1757 void *data = CMSG_DATA(cmsg);
1758 void *target_data = TARGET_CMSG_DATA(target_cmsg);
1759
cbb21eed 1760 int len = tswapal(target_cmsg->cmsg_len)
ad762b99 1761 - sizeof(struct target_cmsghdr);
7854b056
FB
1762
1763 space += CMSG_SPACE(len);
1764 if (space > msgh->msg_controllen) {
1765 space -= CMSG_SPACE(len);
c2aeb258
PM
1766 /* This is a QEMU bug, since we allocated the payload
1767 * area ourselves (unlike overflow in host-to-target
1768 * conversion, which is just the guest giving us a buffer
1769 * that's too small). It can't happen for the payload types
1770 * we currently support; if it becomes an issue in future
1771 * we would need to improve our allocation strategy to
1772 * something more intelligent than "twice the size of the
1773 * target buffer we're reading from".
1774 */
39be5350
JK
1775 qemu_log_mask(LOG_UNIMP,
1776 ("Unsupported ancillary data %d/%d: "
1777 "unhandled msg size\n"),
1778 tswap32(target_cmsg->cmsg_level),
1779 tswap32(target_cmsg->cmsg_type));
7854b056
FB
1780 break;
1781 }
1782
dbf4f796
PJ
1783 if (tswap32(target_cmsg->cmsg_level) == TARGET_SOL_SOCKET) {
1784 cmsg->cmsg_level = SOL_SOCKET;
1785 } else {
1786 cmsg->cmsg_level = tswap32(target_cmsg->cmsg_level);
1787 }
7854b056
FB
1788 cmsg->cmsg_type = tswap32(target_cmsg->cmsg_type);
1789 cmsg->cmsg_len = CMSG_LEN(len);
1790
30b8b68e 1791 if (cmsg->cmsg_level == SOL_SOCKET && cmsg->cmsg_type == SCM_RIGHTS) {
7854b056
FB
1792 int *fd = (int *)data;
1793 int *target_fd = (int *)target_data;
1794 int i, numfds = len / sizeof(int);
1795
876e23cb
PM
1796 for (i = 0; i < numfds; i++) {
1797 __get_user(fd[i], target_fd + i);
1798 }
30b8b68e
AS
1799 } else if (cmsg->cmsg_level == SOL_SOCKET
1800 && cmsg->cmsg_type == SCM_CREDENTIALS) {
1801 struct ucred *cred = (struct ucred *)data;
1802 struct target_ucred *target_cred =
1803 (struct target_ucred *)target_data;
1804
876e23cb
PM
1805 __get_user(cred->pid, &target_cred->pid);
1806 __get_user(cred->uid, &target_cred->uid);
1807 __get_user(cred->gid, &target_cred->gid);
27404b6c
HD
1808 } else if (cmsg->cmsg_level == SOL_ALG) {
1809 uint32_t *dst = (uint32_t *)data;
1810
1811 memcpy(dst, target_data, len);
669dcb60 1812 /* fix endianness of first 32-bit word */
27404b6c
HD
1813 if (len >= sizeof(uint32_t)) {
1814 *dst = tswap32(*dst);
1815 }
30b8b68e 1816 } else {
39be5350
JK
1817 qemu_log_mask(LOG_UNIMP, "Unsupported ancillary data: %d/%d\n",
1818 cmsg->cmsg_level, cmsg->cmsg_type);
30b8b68e 1819 memcpy(data, target_data, len);
7854b056
FB
1820 }
1821
1822 cmsg = CMSG_NXTHDR(msgh, cmsg);
ee104587
JN
1823 target_cmsg = TARGET_CMSG_NXTHDR(target_msgh, target_cmsg,
1824 target_cmsg_start);
7854b056 1825 }
5a4a898d
FB
1826 unlock_user(target_cmsg, target_cmsg_addr, 0);
1827 the_end:
7854b056 1828 msgh->msg_controllen = space;
5a4a898d 1829 return 0;
7854b056
FB
1830}
1831
5a4a898d
FB
1832static inline abi_long host_to_target_cmsg(struct target_msghdr *target_msgh,
1833 struct msghdr *msgh)
7854b056
FB
1834{
1835 struct cmsghdr *cmsg = CMSG_FIRSTHDR(msgh);
5a4a898d
FB
1836 abi_long msg_controllen;
1837 abi_ulong target_cmsg_addr;
ee104587 1838 struct target_cmsghdr *target_cmsg, *target_cmsg_start;
7854b056
FB
1839 socklen_t space = 0;
1840
cbb21eed 1841 msg_controllen = tswapal(target_msgh->msg_controllen);
5a4a898d
FB
1842 if (msg_controllen < sizeof (struct target_cmsghdr))
1843 goto the_end;
cbb21eed 1844 target_cmsg_addr = tswapal(target_msgh->msg_control);
5a4a898d 1845 target_cmsg = lock_user(VERIFY_WRITE, target_cmsg_addr, msg_controllen, 0);
ee104587 1846 target_cmsg_start = target_cmsg;
5a4a898d
FB
1847 if (!target_cmsg)
1848 return -TARGET_EFAULT;
1849
7854b056
FB
1850 while (cmsg && target_cmsg) {
1851 void *data = CMSG_DATA(cmsg);
1852 void *target_data = TARGET_CMSG_DATA(target_cmsg);
1853
ad762b99 1854 int len = cmsg->cmsg_len - sizeof(struct cmsghdr);
c2aeb258 1855 int tgt_len, tgt_space;
7854b056 1856
c2aeb258
PM
1857 /* We never copy a half-header but may copy half-data;
1858 * this is Linux's behaviour in put_cmsg(). Note that
1859 * truncation here is a guest problem (which we report
1860 * to the guest via the CTRUNC bit), unlike truncation
1861 * in target_to_host_cmsg, which is a QEMU bug.
1862 */
7174970a 1863 if (msg_controllen < sizeof(struct target_cmsghdr)) {
c2aeb258 1864 target_msgh->msg_flags |= tswap32(MSG_CTRUNC);
7854b056
FB
1865 break;
1866 }
1867
dbf4f796
PJ
1868 if (cmsg->cmsg_level == SOL_SOCKET) {
1869 target_cmsg->cmsg_level = tswap32(TARGET_SOL_SOCKET);
1870 } else {
1871 target_cmsg->cmsg_level = tswap32(cmsg->cmsg_level);
1872 }
7854b056 1873 target_cmsg->cmsg_type = tswap32(cmsg->cmsg_type);
7854b056 1874
c2aeb258
PM
1875 /* Payload types which need a different size of payload on
1876 * the target must adjust tgt_len here.
1877 */
309786cf 1878 tgt_len = len;
c2aeb258
PM
1879 switch (cmsg->cmsg_level) {
1880 case SOL_SOCKET:
1881 switch (cmsg->cmsg_type) {
1882 case SO_TIMESTAMP:
1883 tgt_len = sizeof(struct target_timeval);
1884 break;
1885 default:
1886 break;
1887 }
309786cf 1888 break;
c2aeb258
PM
1889 default:
1890 break;
1891 }
1892
7174970a 1893 if (msg_controllen < TARGET_CMSG_LEN(tgt_len)) {
c2aeb258 1894 target_msgh->msg_flags |= tswap32(MSG_CTRUNC);
7174970a 1895 tgt_len = msg_controllen - sizeof(struct target_cmsghdr);
c2aeb258
PM
1896 }
1897
1898 /* We must now copy-and-convert len bytes of payload
1899 * into tgt_len bytes of destination space. Bear in mind
1900 * that in both source and destination we may be dealing
1901 * with a truncated value!
1902 */
52b65494
HD
1903 switch (cmsg->cmsg_level) {
1904 case SOL_SOCKET:
1905 switch (cmsg->cmsg_type) {
1906 case SCM_RIGHTS:
1907 {
1908 int *fd = (int *)data;
1909 int *target_fd = (int *)target_data;
c2aeb258 1910 int i, numfds = tgt_len / sizeof(int);
52b65494 1911
876e23cb
PM
1912 for (i = 0; i < numfds; i++) {
1913 __put_user(fd[i], target_fd + i);
1914 }
52b65494
HD
1915 break;
1916 }
1917 case SO_TIMESTAMP:
1918 {
1919 struct timeval *tv = (struct timeval *)data;
1920 struct target_timeval *target_tv =
1921 (struct target_timeval *)target_data;
1922
c2aeb258
PM
1923 if (len != sizeof(struct timeval) ||
1924 tgt_len != sizeof(struct target_timeval)) {
52b65494 1925 goto unimplemented;
c2aeb258 1926 }
52b65494
HD
1927
1928 /* copy struct timeval to target */
876e23cb
PM
1929 __put_user(tv->tv_sec, &target_tv->tv_sec);
1930 __put_user(tv->tv_usec, &target_tv->tv_usec);
52b65494
HD
1931 break;
1932 }
4bc29756
HD
1933 case SCM_CREDENTIALS:
1934 {
1935 struct ucred *cred = (struct ucred *)data;
1936 struct target_ucred *target_cred =
1937 (struct target_ucred *)target_data;
1938
1939 __put_user(cred->pid, &target_cred->pid);
1940 __put_user(cred->uid, &target_cred->uid);
1941 __put_user(cred->gid, &target_cred->gid);
1942 break;
1943 }
52b65494
HD
1944 default:
1945 goto unimplemented;
1946 }
1947 break;
7854b056 1948
ee1ac3a1
HD
1949 case SOL_IP:
1950 switch (cmsg->cmsg_type) {
1951 case IP_TTL:
1952 {
1953 uint32_t *v = (uint32_t *)data;
1954 uint32_t *t_int = (uint32_t *)target_data;
1955
7174970a
PM
1956 if (len != sizeof(uint32_t) ||
1957 tgt_len != sizeof(uint32_t)) {
1958 goto unimplemented;
1959 }
ee1ac3a1
HD
1960 __put_user(*v, t_int);
1961 break;
1962 }
1963 case IP_RECVERR:
1964 {
1965 struct errhdr_t {
1966 struct sock_extended_err ee;
1967 struct sockaddr_in offender;
1968 };
1969 struct errhdr_t *errh = (struct errhdr_t *)data;
1970 struct errhdr_t *target_errh =
1971 (struct errhdr_t *)target_data;
1972
7174970a
PM
1973 if (len != sizeof(struct errhdr_t) ||
1974 tgt_len != sizeof(struct errhdr_t)) {
1975 goto unimplemented;
1976 }
ee1ac3a1
HD
1977 __put_user(errh->ee.ee_errno, &target_errh->ee.ee_errno);
1978 __put_user(errh->ee.ee_origin, &target_errh->ee.ee_origin);
1979 __put_user(errh->ee.ee_type, &target_errh->ee.ee_type);
1980 __put_user(errh->ee.ee_code, &target_errh->ee.ee_code);
1981 __put_user(errh->ee.ee_pad, &target_errh->ee.ee_pad);
1982 __put_user(errh->ee.ee_info, &target_errh->ee.ee_info);
1983 __put_user(errh->ee.ee_data, &target_errh->ee.ee_data);
1984 host_to_target_sockaddr((unsigned long) &target_errh->offender,
1985 (void *) &errh->offender, sizeof(errh->offender));
1986 break;
1987 }
1988 default:
1989 goto unimplemented;
1990 }
1991 break;
1992
1993 case SOL_IPV6:
1994 switch (cmsg->cmsg_type) {
1995 case IPV6_HOPLIMIT:
1996 {
1997 uint32_t *v = (uint32_t *)data;
1998 uint32_t *t_int = (uint32_t *)target_data;
1999
7174970a
PM
2000 if (len != sizeof(uint32_t) ||
2001 tgt_len != sizeof(uint32_t)) {
2002 goto unimplemented;
2003 }
ee1ac3a1
HD
2004 __put_user(*v, t_int);
2005 break;
2006 }
2007 case IPV6_RECVERR:
2008 {
2009 struct errhdr6_t {
2010 struct sock_extended_err ee;
2011 struct sockaddr_in6 offender;
2012 };
2013 struct errhdr6_t *errh = (struct errhdr6_t *)data;
2014 struct errhdr6_t *target_errh =
2015 (struct errhdr6_t *)target_data;
2016
7174970a
PM
2017 if (len != sizeof(struct errhdr6_t) ||
2018 tgt_len != sizeof(struct errhdr6_t)) {
2019 goto unimplemented;
2020 }
ee1ac3a1
HD
2021 __put_user(errh->ee.ee_errno, &target_errh->ee.ee_errno);
2022 __put_user(errh->ee.ee_origin, &target_errh->ee.ee_origin);
2023 __put_user(errh->ee.ee_type, &target_errh->ee.ee_type);
2024 __put_user(errh->ee.ee_code, &target_errh->ee.ee_code);
2025 __put_user(errh->ee.ee_pad, &target_errh->ee.ee_pad);
2026 __put_user(errh->ee.ee_info, &target_errh->ee.ee_info);
2027 __put_user(errh->ee.ee_data, &target_errh->ee.ee_data);
2028 host_to_target_sockaddr((unsigned long) &target_errh->offender,
2029 (void *) &errh->offender, sizeof(errh->offender));
2030 break;
2031 }
2032 default:
2033 goto unimplemented;
2034 }
2035 break;
2036
52b65494
HD
2037 default:
2038 unimplemented:
39be5350
JK
2039 qemu_log_mask(LOG_UNIMP, "Unsupported ancillary data: %d/%d\n",
2040 cmsg->cmsg_level, cmsg->cmsg_type);
c2aeb258
PM
2041 memcpy(target_data, data, MIN(len, tgt_len));
2042 if (tgt_len > len) {
2043 memset(target_data + len, 0, tgt_len - len);
2044 }
7854b056
FB
2045 }
2046
7174970a
PM
2047 target_cmsg->cmsg_len = tswapal(TARGET_CMSG_LEN(tgt_len));
2048 tgt_space = TARGET_CMSG_SPACE(tgt_len);
c2aeb258
PM
2049 if (msg_controllen < tgt_space) {
2050 tgt_space = msg_controllen;
2051 }
2052 msg_controllen -= tgt_space;
2053 space += tgt_space;
7854b056 2054 cmsg = CMSG_NXTHDR(msgh, cmsg);
ee104587
JN
2055 target_cmsg = TARGET_CMSG_NXTHDR(target_msgh, target_cmsg,
2056 target_cmsg_start);
7854b056 2057 }
5a4a898d
FB
2058 unlock_user(target_cmsg, target_cmsg_addr, space);
2059 the_end:
cbb21eed 2060 target_msgh->msg_controllen = tswapal(space);
5a4a898d 2061 return 0;
7854b056
FB
2062}
2063
0da46a6e 2064/* do_setsockopt() Must return target values and target errnos. */
992f48a0 2065static abi_long do_setsockopt(int sockfd, int level, int optname,
2f619698 2066 abi_ulong optval_addr, socklen_t optlen)
7854b056 2067{
992f48a0 2068 abi_long ret;
32407103 2069 int val;
b975b83b 2070 struct ip_mreqn *ip_mreq;
6e3cb58f 2071 struct ip_mreq_source *ip_mreq_source;
3b46e624 2072
8853f86e
FB
2073 switch(level) {
2074 case SOL_TCP:
fe51b0a5
SCW
2075 case SOL_UDP:
2076 /* TCP and UDP options all take an 'int' value. */
7854b056 2077 if (optlen < sizeof(uint32_t))
0da46a6e 2078 return -TARGET_EINVAL;
3b46e624 2079
2f619698
FB
2080 if (get_user_u32(val, optval_addr))
2081 return -TARGET_EFAULT;
8853f86e
FB
2082 ret = get_errno(setsockopt(sockfd, level, optname, &val, sizeof(val)));
2083 break;
2084 case SOL_IP:
2085 switch(optname) {
2efbe911
FB
2086 case IP_TOS:
2087 case IP_TTL:
8853f86e 2088 case IP_HDRINCL:
2efbe911
FB
2089 case IP_ROUTER_ALERT:
2090 case IP_RECVOPTS:
2091 case IP_RETOPTS:
2092 case IP_PKTINFO:
2093 case IP_MTU_DISCOVER:
2094 case IP_RECVERR:
ee1ac3a1 2095 case IP_RECVTTL:
2efbe911
FB
2096 case IP_RECVTOS:
2097#ifdef IP_FREEBIND
2098 case IP_FREEBIND:
2099#endif
2100 case IP_MULTICAST_TTL:
2101 case IP_MULTICAST_LOOP:
8853f86e
FB
2102 val = 0;
2103 if (optlen >= sizeof(uint32_t)) {
2f619698
FB
2104 if (get_user_u32(val, optval_addr))
2105 return -TARGET_EFAULT;
8853f86e 2106 } else if (optlen >= 1) {
2f619698
FB
2107 if (get_user_u8(val, optval_addr))
2108 return -TARGET_EFAULT;
8853f86e
FB
2109 }
2110 ret = get_errno(setsockopt(sockfd, level, optname, &val, sizeof(val)));
2111 break;
b975b83b
LL
2112 case IP_ADD_MEMBERSHIP:
2113 case IP_DROP_MEMBERSHIP:
2114 if (optlen < sizeof (struct target_ip_mreq) ||
2115 optlen > sizeof (struct target_ip_mreqn))
2116 return -TARGET_EINVAL;
2117
2118 ip_mreq = (struct ip_mreqn *) alloca(optlen);
2119 target_to_host_ip_mreq(ip_mreq, optval_addr, optlen);
2120 ret = get_errno(setsockopt(sockfd, level, optname, ip_mreq, optlen));
2121 break;
2122
6e3cb58f
LL
2123 case IP_BLOCK_SOURCE:
2124 case IP_UNBLOCK_SOURCE:
2125 case IP_ADD_SOURCE_MEMBERSHIP:
2126 case IP_DROP_SOURCE_MEMBERSHIP:
2127 if (optlen != sizeof (struct target_ip_mreq_source))
2128 return -TARGET_EINVAL;
2129
2130 ip_mreq_source = lock_user(VERIFY_READ, optval_addr, optlen, 1);
74e43b04
PM
2131 if (!ip_mreq_source) {
2132 return -TARGET_EFAULT;
2133 }
6e3cb58f
LL
2134 ret = get_errno(setsockopt(sockfd, level, optname, ip_mreq_source, optlen));
2135 unlock_user (ip_mreq_source, optval_addr, 0);
2136 break;
2137
920394db
JH
2138 default:
2139 goto unimplemented;
2140 }
2141 break;
0d78b3b5
LV
2142 case SOL_IPV6:
2143 switch (optname) {
2144 case IPV6_MTU_DISCOVER:
2145 case IPV6_MTU:
2146 case IPV6_V6ONLY:
2147 case IPV6_RECVPKTINFO:
ee1ac3a1 2148 case IPV6_UNICAST_HOPS:
21749c4c
LV
2149 case IPV6_MULTICAST_HOPS:
2150 case IPV6_MULTICAST_LOOP:
ee1ac3a1
HD
2151 case IPV6_RECVERR:
2152 case IPV6_RECVHOPLIMIT:
2153 case IPV6_2292HOPLIMIT:
2154 case IPV6_CHECKSUM:
b9cce6d7
HD
2155 case IPV6_ADDRFORM:
2156 case IPV6_2292PKTINFO:
2157 case IPV6_RECVTCLASS:
2158 case IPV6_RECVRTHDR:
2159 case IPV6_2292RTHDR:
2160 case IPV6_RECVHOPOPTS:
2161 case IPV6_2292HOPOPTS:
2162 case IPV6_RECVDSTOPTS:
2163 case IPV6_2292DSTOPTS:
2164 case IPV6_TCLASS:
22db1213 2165 case IPV6_ADDR_PREFERENCES:
b9cce6d7
HD
2166#ifdef IPV6_RECVPATHMTU
2167 case IPV6_RECVPATHMTU:
2168#endif
2169#ifdef IPV6_TRANSPARENT
2170 case IPV6_TRANSPARENT:
2171#endif
2172#ifdef IPV6_FREEBIND
2173 case IPV6_FREEBIND:
2174#endif
2175#ifdef IPV6_RECVORIGDSTADDR
2176 case IPV6_RECVORIGDSTADDR:
2177#endif
0d78b3b5
LV
2178 val = 0;
2179 if (optlen < sizeof(uint32_t)) {
2180 return -TARGET_EINVAL;
2181 }
2182 if (get_user_u32(val, optval_addr)) {
2183 return -TARGET_EFAULT;
2184 }
2185 ret = get_errno(setsockopt(sockfd, level, optname,
2186 &val, sizeof(val)));
2187 break;
ee1ac3a1
HD
2188 case IPV6_PKTINFO:
2189 {
2190 struct in6_pktinfo pki;
2191
2192 if (optlen < sizeof(pki)) {
2193 return -TARGET_EINVAL;
2194 }
2195
2196 if (copy_from_user(&pki, optval_addr, sizeof(pki))) {
2197 return -TARGET_EFAULT;
2198 }
2199
2200 pki.ipi6_ifindex = tswap32(pki.ipi6_ifindex);
2201
2202 ret = get_errno(setsockopt(sockfd, level, optname,
2203 &pki, sizeof(pki)));
2204 break;
2205 }
22bf4ee9
NC
2206 case IPV6_ADD_MEMBERSHIP:
2207 case IPV6_DROP_MEMBERSHIP:
2208 {
2209 struct ipv6_mreq ipv6mreq;
2210
2211 if (optlen < sizeof(ipv6mreq)) {
2212 return -TARGET_EINVAL;
2213 }
2214
2215 if (copy_from_user(&ipv6mreq, optval_addr, sizeof(ipv6mreq))) {
2216 return -TARGET_EFAULT;
2217 }
2218
2219 ipv6mreq.ipv6mr_interface = tswap32(ipv6mreq.ipv6mr_interface);
2220
2221 ret = get_errno(setsockopt(sockfd, level, optname,
2222 &ipv6mreq, sizeof(ipv6mreq)));
2223 break;
2224 }
ee1ac3a1
HD
2225 default:
2226 goto unimplemented;
2227 }
2228 break;
2229 case SOL_ICMPV6:
2230 switch (optname) {
2231 case ICMPV6_FILTER:
2232 {
2233 struct icmp6_filter icmp6f;
2234
2235 if (optlen > sizeof(icmp6f)) {
2236 optlen = sizeof(icmp6f);
2237 }
2238
2239 if (copy_from_user(&icmp6f, optval_addr, optlen)) {
2240 return -TARGET_EFAULT;
2241 }
2242
2243 for (val = 0; val < 8; val++) {
2244 icmp6f.data[val] = tswap32(icmp6f.data[val]);
2245 }
2246
2247 ret = get_errno(setsockopt(sockfd, level, optname,
2248 &icmp6f, optlen));
2249 break;
2250 }
0d78b3b5
LV
2251 default:
2252 goto unimplemented;
2253 }
2254 break;
920394db
JH
2255 case SOL_RAW:
2256 switch (optname) {
2257 case ICMP_FILTER:
ee1ac3a1
HD
2258 case IPV6_CHECKSUM:
2259 /* those take an u32 value */
920394db
JH
2260 if (optlen < sizeof(uint32_t)) {
2261 return -TARGET_EINVAL;
2262 }
2263
2264 if (get_user_u32(val, optval_addr)) {
2265 return -TARGET_EFAULT;
2266 }
2267 ret = get_errno(setsockopt(sockfd, level, optname,
2268 &val, sizeof(val)));
2269 break;
2270
8853f86e
FB
2271 default:
2272 goto unimplemented;
2273 }
2274 break;
f31dddd2
YS
2275#if defined(SOL_ALG) && defined(ALG_SET_KEY) && defined(ALG_SET_AEAD_AUTHSIZE)
2276 case SOL_ALG:
2277 switch (optname) {
2278 case ALG_SET_KEY:
2279 {
2280 char *alg_key = g_malloc(optlen);
2281
2282 if (!alg_key) {
2283 return -TARGET_ENOMEM;
2284 }
2285 if (copy_from_user(alg_key, optval_addr, optlen)) {
2286 g_free(alg_key);
2287 return -TARGET_EFAULT;
2288 }
2289 ret = get_errno(setsockopt(sockfd, level, optname,
2290 alg_key, optlen));
2291 g_free(alg_key);
2292 break;
2293 }
2294 case ALG_SET_AEAD_AUTHSIZE:
2295 {
2296 ret = get_errno(setsockopt(sockfd, level, optname,
2297 NULL, optlen));
2298 break;
2299 }
2300 default:
2301 goto unimplemented;
2302 }
2303 break;
2304#endif
3532fa74 2305 case TARGET_SOL_SOCKET:
8853f86e 2306 switch (optname) {
1b09aeb9
LV
2307 case TARGET_SO_RCVTIMEO:
2308 {
2309 struct timeval tv;
2310
2311 optname = SO_RCVTIMEO;
2312
2313set_timeout:
2314 if (optlen != sizeof(struct target_timeval)) {
2315 return -TARGET_EINVAL;
2316 }
2317
2318 if (copy_from_user_timeval(&tv, optval_addr)) {
2319 return -TARGET_EFAULT;
2320 }
2321
2322 ret = get_errno(setsockopt(sockfd, SOL_SOCKET, optname,
2323 &tv, sizeof(tv)));
2324 return ret;
2325 }
2326 case TARGET_SO_SNDTIMEO:
2327 optname = SO_SNDTIMEO;
2328 goto set_timeout;
f57d4192
LV
2329 case TARGET_SO_ATTACH_FILTER:
2330 {
2331 struct target_sock_fprog *tfprog;
2332 struct target_sock_filter *tfilter;
2333 struct sock_fprog fprog;
2334 struct sock_filter *filter;
2335 int i;
2336
2337 if (optlen != sizeof(*tfprog)) {
2338 return -TARGET_EINVAL;
2339 }
2340 if (!lock_user_struct(VERIFY_READ, tfprog, optval_addr, 0)) {
2341 return -TARGET_EFAULT;
2342 }
2343 if (!lock_user_struct(VERIFY_READ, tfilter,
2344 tswapal(tfprog->filter), 0)) {
2345 unlock_user_struct(tfprog, optval_addr, 1);
2346 return -TARGET_EFAULT;
2347 }
2348
2349 fprog.len = tswap16(tfprog->len);
0e173b24 2350 filter = g_try_new(struct sock_filter, fprog.len);
f57d4192
LV
2351 if (filter == NULL) {
2352 unlock_user_struct(tfilter, tfprog->filter, 1);
2353 unlock_user_struct(tfprog, optval_addr, 1);
2354 return -TARGET_ENOMEM;
2355 }
2356 for (i = 0; i < fprog.len; i++) {
2357 filter[i].code = tswap16(tfilter[i].code);
2358 filter[i].jt = tfilter[i].jt;
2359 filter[i].jf = tfilter[i].jf;
2360 filter[i].k = tswap32(tfilter[i].k);
2361 }
2362 fprog.filter = filter;
2363
2364 ret = get_errno(setsockopt(sockfd, SOL_SOCKET,
2365 SO_ATTACH_FILTER, &fprog, sizeof(fprog)));
0e173b24 2366 g_free(filter);
f57d4192
LV
2367
2368 unlock_user_struct(tfilter, tfprog->filter, 1);
2369 unlock_user_struct(tfprog, optval_addr, 1);
2370 return ret;
2371 }
451aaf68
JT
2372 case TARGET_SO_BINDTODEVICE:
2373 {
2374 char *dev_ifname, *addr_ifname;
2375
2376 if (optlen > IFNAMSIZ - 1) {
2377 optlen = IFNAMSIZ - 1;
2378 }
2379 dev_ifname = lock_user(VERIFY_READ, optval_addr, optlen, 1);
2380 if (!dev_ifname) {
2381 return -TARGET_EFAULT;
2382 }
2383 optname = SO_BINDTODEVICE;
2384 addr_ifname = alloca(IFNAMSIZ);
2385 memcpy(addr_ifname, dev_ifname, optlen);
2386 addr_ifname[optlen] = 0;
fad6c58a
CG
2387 ret = get_errno(setsockopt(sockfd, SOL_SOCKET, optname,
2388 addr_ifname, optlen));
451aaf68
JT
2389 unlock_user (dev_ifname, optval_addr, 0);
2390 return ret;
2391 }
83eb6e50
CMAB
2392 case TARGET_SO_LINGER:
2393 {
2394 struct linger lg;
2395 struct target_linger *tlg;
2396
2397 if (optlen != sizeof(struct target_linger)) {
2398 return -TARGET_EINVAL;
2399 }
2400 if (!lock_user_struct(VERIFY_READ, tlg, optval_addr, 1)) {
2401 return -TARGET_EFAULT;
2402 }
2403 __get_user(lg.l_onoff, &tlg->l_onoff);
2404 __get_user(lg.l_linger, &tlg->l_linger);
2405 ret = get_errno(setsockopt(sockfd, SOL_SOCKET, SO_LINGER,
2406 &lg, sizeof(lg)));
2407 unlock_user_struct(tlg, optval_addr, 0);
2408 return ret;
2409 }
8853f86e 2410 /* Options with 'int' argument. */
3532fa74
FB
2411 case TARGET_SO_DEBUG:
2412 optname = SO_DEBUG;
2413 break;
2414 case TARGET_SO_REUSEADDR:
2415 optname = SO_REUSEADDR;
2416 break;
113a9dd7
YS
2417#ifdef SO_REUSEPORT
2418 case TARGET_SO_REUSEPORT:
2419 optname = SO_REUSEPORT;
2420 break;
2421#endif
3532fa74
FB
2422 case TARGET_SO_TYPE:
2423 optname = SO_TYPE;
2424 break;
2425 case TARGET_SO_ERROR:
2426 optname = SO_ERROR;
2427 break;
2428 case TARGET_SO_DONTROUTE:
2429 optname = SO_DONTROUTE;
2430 break;
2431 case TARGET_SO_BROADCAST:
2432 optname = SO_BROADCAST;
2433 break;
2434 case TARGET_SO_SNDBUF:
2435 optname = SO_SNDBUF;
2436 break;
d79b6cc4
PB
2437 case TARGET_SO_SNDBUFFORCE:
2438 optname = SO_SNDBUFFORCE;
2439 break;
3532fa74
FB
2440 case TARGET_SO_RCVBUF:
2441 optname = SO_RCVBUF;
2442 break;
d79b6cc4
PB
2443 case TARGET_SO_RCVBUFFORCE:
2444 optname = SO_RCVBUFFORCE;
2445 break;
3532fa74
FB
2446 case TARGET_SO_KEEPALIVE:
2447 optname = SO_KEEPALIVE;
2448 break;
2449 case TARGET_SO_OOBINLINE:
2450 optname = SO_OOBINLINE;
2451 break;
2452 case TARGET_SO_NO_CHECK:
2453 optname = SO_NO_CHECK;
2454 break;
2455 case TARGET_SO_PRIORITY:
2456 optname = SO_PRIORITY;
2457 break;
5e83e8e3 2458#ifdef SO_BSDCOMPAT
3532fa74
FB
2459 case TARGET_SO_BSDCOMPAT:
2460 optname = SO_BSDCOMPAT;
2461 break;
5e83e8e3 2462#endif
3532fa74
FB
2463 case TARGET_SO_PASSCRED:
2464 optname = SO_PASSCRED;
2465 break;
82d0fe6b
PB
2466 case TARGET_SO_PASSSEC:
2467 optname = SO_PASSSEC;
2468 break;
3532fa74
FB
2469 case TARGET_SO_TIMESTAMP:
2470 optname = SO_TIMESTAMP;
2471 break;
2472 case TARGET_SO_RCVLOWAT:
2473 optname = SO_RCVLOWAT;
2474 break;
8853f86e
FB
2475 default:
2476 goto unimplemented;
2477 }
3532fa74 2478 if (optlen < sizeof(uint32_t))
2f619698 2479 return -TARGET_EINVAL;
3532fa74 2480
2f619698
FB
2481 if (get_user_u32(val, optval_addr))
2482 return -TARGET_EFAULT;
3532fa74 2483 ret = get_errno(setsockopt(sockfd, SOL_SOCKET, optname, &val, sizeof(val)));
8853f86e 2484 break;
a2d86682
JK
2485#ifdef SOL_NETLINK
2486 case SOL_NETLINK:
2487 switch (optname) {
2488 case NETLINK_PKTINFO:
2489 case NETLINK_ADD_MEMBERSHIP:
2490 case NETLINK_DROP_MEMBERSHIP:
2491 case NETLINK_BROADCAST_ERROR:
2492 case NETLINK_NO_ENOBUFS:
2493#if LINUX_VERSION_CODE >= KERNEL_VERSION(4, 2, 0)
2494 case NETLINK_LISTEN_ALL_NSID:
2495 case NETLINK_CAP_ACK:
2496#endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(4, 2, 0) */
2497#if LINUX_VERSION_CODE >= KERNEL_VERSION(4, 12, 0)
2498 case NETLINK_EXT_ACK:
2499#endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(4, 12, 0) */
2500#if LINUX_VERSION_CODE >= KERNEL_VERSION(4, 20, 0)
2501 case NETLINK_GET_STRICT_CHK:
2502#endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(4, 12, 0) */
2503 break;
2504 default:
2505 goto unimplemented;
2506 }
2507 val = 0;
2508 if (optlen < sizeof(uint32_t)) {
2509 return -TARGET_EINVAL;
2510 }
2511 if (get_user_u32(val, optval_addr)) {
2512 return -TARGET_EFAULT;
2513 }
2514 ret = get_errno(setsockopt(sockfd, SOL_NETLINK, optname, &val,
2515 sizeof(val)));
2516 break;
2517#endif /* SOL_NETLINK */
7854b056 2518 default:
8853f86e 2519 unimplemented:
39be5350
JK
2520 qemu_log_mask(LOG_UNIMP, "Unsupported setsockopt level=%d optname=%d\n",
2521 level, optname);
6fa13c17 2522 ret = -TARGET_ENOPROTOOPT;
7854b056 2523 }
8853f86e 2524 return ret;
7854b056
FB
2525}
2526
0da46a6e 2527/* do_getsockopt() Must return target values and target errnos. */
992f48a0 2528static abi_long do_getsockopt(int sockfd, int level, int optname,
2f619698 2529 abi_ulong optval_addr, abi_ulong optlen)
7854b056 2530{
992f48a0 2531 abi_long ret;
b55266b5
BS
2532 int len, val;
2533 socklen_t lv;
8853f86e
FB
2534
2535 switch(level) {
3532fa74 2536 case TARGET_SOL_SOCKET:
f3b974cd
JL
2537 level = SOL_SOCKET;
2538 switch (optname) {
2539 /* These don't just return a single integer */
f3b974cd
JL
2540 case TARGET_SO_PEERNAME:
2541 goto unimplemented;
405dc4cf
AS
2542 case TARGET_SO_RCVTIMEO: {
2543 struct timeval tv;
2544 socklen_t tvlen;
2545
2546 optname = SO_RCVTIMEO;
2547
2548get_timeout:
2549 if (get_user_u32(len, optlen)) {
2550 return -TARGET_EFAULT;
2551 }
2552 if (len < 0) {
2553 return -TARGET_EINVAL;
2554 }
2555
2556 tvlen = sizeof(tv);
2557 ret = get_errno(getsockopt(sockfd, level, optname,
2558 &tv, &tvlen));
2559 if (ret < 0) {
2560 return ret;
2561 }
2562 if (len > sizeof(struct target_timeval)) {
2563 len = sizeof(struct target_timeval);
2564 }
2565 if (copy_to_user_timeval(optval_addr, &tv)) {
2566 return -TARGET_EFAULT;
2567 }
2568 if (put_user_u32(len, optlen)) {
2569 return -TARGET_EFAULT;
2570 }
2571 break;
2572 }
2573 case TARGET_SO_SNDTIMEO:
2574 optname = SO_SNDTIMEO;
2575 goto get_timeout;
583359a6
AP
2576 case TARGET_SO_PEERCRED: {
2577 struct ucred cr;
2578 socklen_t crlen;
2579 struct target_ucred *tcr;
2580
2581 if (get_user_u32(len, optlen)) {
2582 return -TARGET_EFAULT;
2583 }
2584 if (len < 0) {
2585 return -TARGET_EINVAL;
2586 }
2587
2588 crlen = sizeof(cr);
2589 ret = get_errno(getsockopt(sockfd, level, SO_PEERCRED,
2590 &cr, &crlen));
2591 if (ret < 0) {
2592 return ret;
2593 }
2594 if (len > crlen) {
2595 len = crlen;
2596 }
2597 if (!lock_user_struct(VERIFY_WRITE, tcr, optval_addr, 0)) {
2598 return -TARGET_EFAULT;
2599 }
2600 __put_user(cr.pid, &tcr->pid);
2601 __put_user(cr.uid, &tcr->uid);
2602 __put_user(cr.gid, &tcr->gid);
2603 unlock_user_struct(tcr, optval_addr, 1);
2604 if (put_user_u32(len, optlen)) {
83eb6e50
CMAB
2605 return -TARGET_EFAULT;
2606 }
2607 break;
2608 }
6d485a55
LV
2609 case TARGET_SO_PEERSEC: {
2610 char *name;
2611
2612 if (get_user_u32(len, optlen)) {
2613 return -TARGET_EFAULT;
2614 }
2615 if (len < 0) {
2616 return -TARGET_EINVAL;
2617 }
2618 name = lock_user(VERIFY_WRITE, optval_addr, len, 0);
2619 if (!name) {
2620 return -TARGET_EFAULT;
2621 }
2622 lv = len;
2623 ret = get_errno(getsockopt(sockfd, level, SO_PEERSEC,
2624 name, &lv));
2625 if (put_user_u32(lv, optlen)) {
2626 ret = -TARGET_EFAULT;
2627 }
2628 unlock_user(name, optval_addr, lv);
2629 break;
2630 }
83eb6e50
CMAB
2631 case TARGET_SO_LINGER:
2632 {
2633 struct linger lg;
2634 socklen_t lglen;
2635 struct target_linger *tlg;
2636
2637 if (get_user_u32(len, optlen)) {
2638 return -TARGET_EFAULT;
2639 }
2640 if (len < 0) {
2641 return -TARGET_EINVAL;
2642 }
2643
2644 lglen = sizeof(lg);
2645 ret = get_errno(getsockopt(sockfd, level, SO_LINGER,
2646 &lg, &lglen));
2647 if (ret < 0) {
2648 return ret;
2649 }
2650 if (len > lglen) {
2651 len = lglen;
2652 }
2653 if (!lock_user_struct(VERIFY_WRITE, tlg, optval_addr, 0)) {
2654 return -TARGET_EFAULT;
2655 }
2656 __put_user(lg.l_onoff, &tlg->l_onoff);
2657 __put_user(lg.l_linger, &tlg->l_linger);
2658 unlock_user_struct(tlg, optval_addr, 1);
2659 if (put_user_u32(len, optlen)) {
583359a6
AP
2660 return -TARGET_EFAULT;
2661 }
2662 break;
2663 }
f3b974cd
JL
2664 /* Options with 'int' argument. */
2665 case TARGET_SO_DEBUG:
2666 optname = SO_DEBUG;
2667 goto int_case;
2668 case TARGET_SO_REUSEADDR:
2669 optname = SO_REUSEADDR;
2670 goto int_case;
113a9dd7
YS
2671#ifdef SO_REUSEPORT
2672 case TARGET_SO_REUSEPORT:
2673 optname = SO_REUSEPORT;
2674 goto int_case;
2675#endif
f3b974cd
JL
2676 case TARGET_SO_TYPE:
2677 optname = SO_TYPE;
2678 goto int_case;
2679 case TARGET_SO_ERROR:
2680 optname = SO_ERROR;
2681 goto int_case;
2682 case TARGET_SO_DONTROUTE:
2683 optname = SO_DONTROUTE;
2684 goto int_case;
2685 case TARGET_SO_BROADCAST:
2686 optname = SO_BROADCAST;
2687 goto int_case;
2688 case TARGET_SO_SNDBUF:
2689 optname = SO_SNDBUF;
2690 goto int_case;
2691 case TARGET_SO_RCVBUF:
2692 optname = SO_RCVBUF;
2693 goto int_case;
2694 case TARGET_SO_KEEPALIVE:
2695 optname = SO_KEEPALIVE;
2696 goto int_case;
2697 case TARGET_SO_OOBINLINE:
2698 optname = SO_OOBINLINE;
2699 goto int_case;
2700 case TARGET_SO_NO_CHECK:
2701 optname = SO_NO_CHECK;
2702 goto int_case;
2703 case TARGET_SO_PRIORITY:
2704 optname = SO_PRIORITY;
2705 goto int_case;
2706#ifdef SO_BSDCOMPAT
2707 case TARGET_SO_BSDCOMPAT:
2708 optname = SO_BSDCOMPAT;
2709 goto int_case;
2710#endif
2711 case TARGET_SO_PASSCRED:
2712 optname = SO_PASSCRED;
2713 goto int_case;
2714 case TARGET_SO_TIMESTAMP:
2715 optname = SO_TIMESTAMP;
2716 goto int_case;
2717 case TARGET_SO_RCVLOWAT:
2718 optname = SO_RCVLOWAT;
2719 goto int_case;
aec1ca41
PB
2720 case TARGET_SO_ACCEPTCONN:
2721 optname = SO_ACCEPTCONN;
2722 goto int_case;
ec63e06e
JD
2723 case TARGET_SO_PROTOCOL:
2724 optname = SO_PROTOCOL;
2725 goto int_case;
2726 case TARGET_SO_DOMAIN:
2727 optname = SO_DOMAIN;
2728 goto int_case;
8853f86e 2729 default:
2efbe911
FB
2730 goto int_case;
2731 }
2732 break;
2733 case SOL_TCP:
fe51b0a5
SCW
2734 case SOL_UDP:
2735 /* TCP and UDP options all take an 'int' value. */
2efbe911 2736 int_case:
2f619698
FB
2737 if (get_user_u32(len, optlen))
2738 return -TARGET_EFAULT;
2efbe911 2739 if (len < 0)
0da46a6e 2740 return -TARGET_EINVAL;
73160d95 2741 lv = sizeof(lv);
2efbe911
FB
2742 ret = get_errno(getsockopt(sockfd, level, optname, &val, &lv));
2743 if (ret < 0)
2744 return ret;
cb88b7c2
HD
2745 switch (optname) {
2746 case SO_TYPE:
8289d112 2747 val = host_to_target_sock_type(val);
cb88b7c2
HD
2748 break;
2749 case SO_ERROR:
2750 val = host_to_target_errno(val);
2751 break;
8289d112 2752 }
2efbe911
FB
2753 if (len > lv)
2754 len = lv;
2f619698
FB
2755 if (len == 4) {
2756 if (put_user_u32(val, optval_addr))
2757 return -TARGET_EFAULT;
2758 } else {
2759 if (put_user_u8(val, optval_addr))
2760 return -TARGET_EFAULT;
f3b974cd 2761 }
2f619698
FB
2762 if (put_user_u32(len, optlen))
2763 return -TARGET_EFAULT;
2efbe911
FB
2764 break;
2765 case SOL_IP:
2766 switch(optname) {
2767 case IP_TOS:
2768 case IP_TTL:
2769 case IP_HDRINCL:
2770 case IP_ROUTER_ALERT:
2771 case IP_RECVOPTS:
2772 case IP_RETOPTS:
2773 case IP_PKTINFO:
2774 case IP_MTU_DISCOVER:
2775 case IP_RECVERR:
2776 case IP_RECVTOS:
2777#ifdef IP_FREEBIND
2778 case IP_FREEBIND:
2779#endif
2780 case IP_MULTICAST_TTL:
2781 case IP_MULTICAST_LOOP:
2f619698
FB
2782 if (get_user_u32(len, optlen))
2783 return -TARGET_EFAULT;
8853f86e 2784 if (len < 0)
0da46a6e 2785 return -TARGET_EINVAL;
73160d95 2786 lv = sizeof(lv);
8853f86e
FB
2787 ret = get_errno(getsockopt(sockfd, level, optname, &val, &lv));
2788 if (ret < 0)
2789 return ret;
2efbe911 2790 if (len < sizeof(int) && len > 0 && val >= 0 && val < 255) {
2efbe911 2791 len = 1;
2f619698
FB
2792 if (put_user_u32(len, optlen)
2793 || put_user_u8(val, optval_addr))
2794 return -TARGET_EFAULT;
2efbe911 2795 } else {
2efbe911
FB
2796 if (len > sizeof(int))
2797 len = sizeof(int);
2f619698
FB
2798 if (put_user_u32(len, optlen)
2799 || put_user_u32(val, optval_addr))
2800 return -TARGET_EFAULT;
2efbe911 2801 }
8853f86e 2802 break;
2efbe911 2803 default:
c02f499e
TS
2804 ret = -TARGET_ENOPROTOOPT;
2805 break;
8853f86e
FB
2806 }
2807 break;
bd8ed485
TD
2808 case SOL_IPV6:
2809 switch (optname) {
2810 case IPV6_MTU_DISCOVER:
2811 case IPV6_MTU:
2812 case IPV6_V6ONLY:
2813 case IPV6_RECVPKTINFO:
2814 case IPV6_UNICAST_HOPS:
2815 case IPV6_MULTICAST_HOPS:
2816 case IPV6_MULTICAST_LOOP:
2817 case IPV6_RECVERR:
2818 case IPV6_RECVHOPLIMIT:
2819 case IPV6_2292HOPLIMIT:
2820 case IPV6_CHECKSUM:
b9cce6d7
HD
2821 case IPV6_ADDRFORM:
2822 case IPV6_2292PKTINFO:
2823 case IPV6_RECVTCLASS:
2824 case IPV6_RECVRTHDR:
2825 case IPV6_2292RTHDR:
2826 case IPV6_RECVHOPOPTS:
2827 case IPV6_2292HOPOPTS:
2828 case IPV6_RECVDSTOPTS:
2829 case IPV6_2292DSTOPTS:
2830 case IPV6_TCLASS:
22db1213 2831 case IPV6_ADDR_PREFERENCES:
b9cce6d7
HD
2832#ifdef IPV6_RECVPATHMTU
2833 case IPV6_RECVPATHMTU:
2834#endif
2835#ifdef IPV6_TRANSPARENT
2836 case IPV6_TRANSPARENT:
2837#endif
2838#ifdef IPV6_FREEBIND
2839 case IPV6_FREEBIND:
2840#endif
2841#ifdef IPV6_RECVORIGDSTADDR
2842 case IPV6_RECVORIGDSTADDR:
2843#endif
bd8ed485
TD
2844 if (get_user_u32(len, optlen))
2845 return -TARGET_EFAULT;
2846 if (len < 0)
2847 return -TARGET_EINVAL;
2848 lv = sizeof(lv);
2849 ret = get_errno(getsockopt(sockfd, level, optname, &val, &lv));
2850 if (ret < 0)
2851 return ret;
2852 if (len < sizeof(int) && len > 0 && val >= 0 && val < 255) {
2853 len = 1;
2854 if (put_user_u32(len, optlen)
2855 || put_user_u8(val, optval_addr))
2856 return -TARGET_EFAULT;
2857 } else {
2858 if (len > sizeof(int))
2859 len = sizeof(int);
2860 if (put_user_u32(len, optlen)
2861 || put_user_u32(val, optval_addr))
2862 return -TARGET_EFAULT;
2863 }
2864 break;
2865 default:
2866 ret = -TARGET_ENOPROTOOPT;
2867 break;
2868 }
2869 break;
a2d86682
JK
2870#ifdef SOL_NETLINK
2871 case SOL_NETLINK:
2872 switch (optname) {
2873 case NETLINK_PKTINFO:
2874 case NETLINK_BROADCAST_ERROR:
2875 case NETLINK_NO_ENOBUFS:
2876#if LINUX_VERSION_CODE >= KERNEL_VERSION(4, 2, 0)
2877 case NETLINK_LISTEN_ALL_NSID:
2878 case NETLINK_CAP_ACK:
2879#endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(4, 2, 0) */
2880#if LINUX_VERSION_CODE >= KERNEL_VERSION(4, 12, 0)
2881 case NETLINK_EXT_ACK:
2882#endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(4, 12, 0) */
2883#if LINUX_VERSION_CODE >= KERNEL_VERSION(4, 20, 0)
2884 case NETLINK_GET_STRICT_CHK:
2885#endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(4, 12, 0) */
2886 if (get_user_u32(len, optlen)) {
2887 return -TARGET_EFAULT;
2888 }
2889 if (len != sizeof(val)) {
2890 return -TARGET_EINVAL;
2891 }
2892 lv = len;
2893 ret = get_errno(getsockopt(sockfd, level, optname, &val, &lv));
2894 if (ret < 0) {
2895 return ret;
2896 }
2897 if (put_user_u32(lv, optlen)
2898 || put_user_u32(val, optval_addr)) {
2899 return -TARGET_EFAULT;
2900 }
2901 break;
2902#if LINUX_VERSION_CODE >= KERNEL_VERSION(4, 2, 0)
2903 case NETLINK_LIST_MEMBERSHIPS:
2904 {
2905 uint32_t *results;
2906 int i;
2907 if (get_user_u32(len, optlen)) {
2908 return -TARGET_EFAULT;
2909 }
2910 if (len < 0) {
2911 return -TARGET_EINVAL;
2912 }
2913 results = lock_user(VERIFY_WRITE, optval_addr, len, 1);
13e340c8 2914 if (!results && len > 0) {
a2d86682
JK
2915 return -TARGET_EFAULT;
2916 }
2917 lv = len;
2918 ret = get_errno(getsockopt(sockfd, level, optname, results, &lv));
2919 if (ret < 0) {
2920 unlock_user(results, optval_addr, 0);
2921 return ret;
2922 }
669dcb60 2923 /* swap host endianness to target endianness. */
a2d86682
JK
2924 for (i = 0; i < (len / sizeof(uint32_t)); i++) {
2925 results[i] = tswap32(results[i]);
2926 }
2927 if (put_user_u32(lv, optlen)) {
2928 return -TARGET_EFAULT;
2929 }
2930 unlock_user(results, optval_addr, 0);
2931 break;
2932 }
2933#endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(4, 2, 0) */
2934 default:
2935 goto unimplemented;
2936 }
c0cb8801 2937 break;
a2d86682 2938#endif /* SOL_NETLINK */
8853f86e
FB
2939 default:
2940 unimplemented:
39be5350
JK
2941 qemu_log_mask(LOG_UNIMP,
2942 "getsockopt level=%d optname=%d not yet supported\n",
2943 level, optname);
c02f499e 2944 ret = -TARGET_EOPNOTSUPP;
8853f86e
FB
2945 break;
2946 }
2947 return ret;
7854b056
FB
2948}
2949
9ac22517
MF
2950/* Convert target low/high pair representing file offset into the host
2951 * low/high pair. This function doesn't handle offsets bigger than 64 bits
2952 * as the kernel doesn't handle them either.
2953 */
2954static void target_to_host_low_high(abi_ulong tlow,
2955 abi_ulong thigh,
2956 unsigned long *hlow,
2957 unsigned long *hhigh)
2958{
2959 uint64_t off = tlow |
2960 ((unsigned long long)thigh << TARGET_LONG_BITS / 2) <<
2961 TARGET_LONG_BITS / 2;
2962
2963 *hlow = off;
2964 *hhigh = (off >> HOST_LONG_BITS / 2) >> HOST_LONG_BITS / 2;
2965}
2966
f287b2c2 2967static struct iovec *lock_iovec(int type, abi_ulong target_addr,
dab32b32 2968 abi_ulong count, int copy)
53a5960a
PB
2969{
2970 struct target_iovec *target_vec;
f287b2c2
RH
2971 struct iovec *vec;
2972 abi_ulong total_len, max_len;
d732dcb4 2973 int i;
501bb4b0 2974 int err = 0;
29560a6c 2975 bool bad_address = false;
53a5960a 2976
f287b2c2
RH
2977 if (count == 0) {
2978 errno = 0;
2979 return NULL;
2980 }
dab32b32 2981 if (count > IOV_MAX) {
f287b2c2
RH
2982 errno = EINVAL;
2983 return NULL;
2984 }
2985
0e173b24 2986 vec = g_try_new0(struct iovec, count);
f287b2c2
RH
2987 if (vec == NULL) {
2988 errno = ENOMEM;
2989 return NULL;
2990 }
2991
2992 target_vec = lock_user(VERIFY_READ, target_addr,
2993 count * sizeof(struct target_iovec), 1);
2994 if (target_vec == NULL) {
501bb4b0 2995 err = EFAULT;
f287b2c2
RH
2996 goto fail2;
2997 }
2998
2999 /* ??? If host page size > target page size, this will result in a
3000 value larger than what we can actually support. */
3001 max_len = 0x7fffffff & TARGET_PAGE_MASK;
3002 total_len = 0;
3003
3004 for (i = 0; i < count; i++) {
3005 abi_ulong base = tswapal(target_vec[i].iov_base);
3006 abi_long len = tswapal(target_vec[i].iov_len);
3007
3008 if (len < 0) {
501bb4b0 3009 err = EINVAL;
f287b2c2
RH
3010 goto fail;
3011 } else if (len == 0) {
3012 /* Zero length pointer is ignored. */
3013 vec[i].iov_base = 0;
41df8411 3014 } else {
f287b2c2 3015 vec[i].iov_base = lock_user(type, base, len, copy);
29560a6c
TM
3016 /* If the first buffer pointer is bad, this is a fault. But
3017 * subsequent bad buffers will result in a partial write; this
3018 * is realized by filling the vector with null pointers and
3019 * zero lengths. */
f287b2c2 3020 if (!vec[i].iov_base) {
29560a6c
TM
3021 if (i == 0) {
3022 err = EFAULT;
3023 goto fail;
3024 } else {
3025 bad_address = true;
3026 }
3027 }
3028 if (bad_address) {
3029 len = 0;
f287b2c2
RH
3030 }
3031 if (len > max_len - total_len) {
3032 len = max_len - total_len;
3033 }
41df8411 3034 }
f287b2c2
RH
3035 vec[i].iov_len = len;
3036 total_len += len;
579a97f7 3037 }
f287b2c2
RH
3038
3039 unlock_user(target_vec, target_addr, 0);
3040 return vec;
3041
3042 fail:
7eff518b
CG
3043 while (--i >= 0) {
3044 if (tswapal(target_vec[i].iov_len) > 0) {
3045 unlock_user(vec[i].iov_base, tswapal(target_vec[i].iov_base), 0);
3046 }
3047 }
f287b2c2 3048 unlock_user(target_vec, target_addr, 0);
501bb4b0 3049 fail2:
0e173b24 3050 g_free(vec);
501bb4b0 3051 errno = err;
f287b2c2 3052 return NULL;
53a5960a
PB
3053}
3054
f287b2c2 3055static void unlock_iovec(struct iovec *vec, abi_ulong target_addr,
dab32b32 3056 abi_ulong count, int copy)
53a5960a
PB
3057{
3058 struct target_iovec *target_vec;
53a5960a
PB
3059 int i;
3060
f287b2c2
RH
3061 target_vec = lock_user(VERIFY_READ, target_addr,
3062 count * sizeof(struct target_iovec), 1);
3063 if (target_vec) {
3064 for (i = 0; i < count; i++) {
3065 abi_ulong base = tswapal(target_vec[i].iov_base);
71ec7cef 3066 abi_long len = tswapal(target_vec[i].iov_len);
f287b2c2
RH
3067 if (len < 0) {
3068 break;
3069 }
d732dcb4
AZ
3070 unlock_user(vec[i].iov_base, base, copy ? vec[i].iov_len : 0);
3071 }
f287b2c2 3072 unlock_user(target_vec, target_addr, 0);
53a5960a 3073 }
579a97f7 3074
0e173b24 3075 g_free(vec);
53a5960a
PB
3076}
3077
53d09b76 3078static inline int target_to_host_sock_type(int *type)
3532fa74 3079{
f651e6ae
PJ
3080 int host_type = 0;
3081 int target_type = *type;
3082
3083 switch (target_type & TARGET_SOCK_TYPE_MASK) {
3532fa74 3084 case TARGET_SOCK_DGRAM:
f651e6ae 3085 host_type = SOCK_DGRAM;
3532fa74
FB
3086 break;
3087 case TARGET_SOCK_STREAM:
f651e6ae 3088 host_type = SOCK_STREAM;
3532fa74 3089 break;
f651e6ae
PJ
3090 default:
3091 host_type = target_type & TARGET_SOCK_TYPE_MASK;
3532fa74
FB
3092 break;
3093 }
f651e6ae 3094 if (target_type & TARGET_SOCK_CLOEXEC) {
53d09b76 3095#if defined(SOCK_CLOEXEC)
f651e6ae 3096 host_type |= SOCK_CLOEXEC;
53d09b76
EI
3097#else
3098 return -TARGET_EINVAL;
3099#endif
f651e6ae
PJ
3100 }
3101 if (target_type & TARGET_SOCK_NONBLOCK) {
53d09b76 3102#if defined(SOCK_NONBLOCK)
f651e6ae 3103 host_type |= SOCK_NONBLOCK;
53d09b76
EI
3104#elif !defined(O_NONBLOCK)
3105 return -TARGET_EINVAL;
3106#endif
f651e6ae
PJ
3107 }
3108 *type = host_type;
53d09b76
EI
3109 return 0;
3110}
3111
3112/* Try to emulate socket type flags after socket creation. */
3113static int sock_flags_fixup(int fd, int target_type)
3114{
3115#if !defined(SOCK_NONBLOCK) && defined(O_NONBLOCK)
3116 if (target_type & TARGET_SOCK_NONBLOCK) {
3117 int flags = fcntl(fd, F_GETFL);
3118 if (fcntl(fd, F_SETFL, O_NONBLOCK | flags) == -1) {
3119 close(fd);
3120 return -TARGET_EINVAL;
3121 }
3122 }
3123#endif
3124 return fd;
f651e6ae
PJ
3125}
3126
3127/* do_socket() Must return target values and target errnos. */
3128static abi_long do_socket(int domain, int type, int protocol)
3129{
53d09b76
EI
3130 int target_type = type;
3131 int ret;
3132
3133 ret = target_to_host_sock_type(&type);
3134 if (ret) {
3135 return ret;
3136 }
f651e6ae 3137
575b22b1
LV
3138 if (domain == PF_NETLINK && !(
3139#ifdef CONFIG_RTNETLINK
3140 protocol == NETLINK_ROUTE ||
3141#endif
3142 protocol == NETLINK_KOBJECT_UEVENT ||
3143 protocol == NETLINK_AUDIT)) {
71e2443e 3144 return -TARGET_EPROTONOSUPPORT;
6c5b5645 3145 }
ff626f2d
LV
3146
3147 if (domain == AF_PACKET ||
3148 (domain == AF_INET && type == SOCK_PACKET)) {
3149 protocol = tswap16(protocol);
3150 }
3151
53d09b76
EI
3152 ret = get_errno(socket(domain, type, protocol));
3153 if (ret >= 0) {
3154 ret = sock_flags_fixup(ret, target_type);
0cf22722
LV
3155 if (type == SOCK_PACKET) {
3156 /* Manage an obsolete case :
3157 * if socket type is SOCK_PACKET, bind by name
3158 */
3159 fd_trans_register(ret, &target_packet_trans);
6c5b5645
LV
3160 } else if (domain == PF_NETLINK) {
3161 switch (protocol) {
575b22b1 3162#ifdef CONFIG_RTNETLINK
6c5b5645
LV
3163 case NETLINK_ROUTE:
3164 fd_trans_register(ret, &target_netlink_route_trans);
3165 break;
575b22b1 3166#endif
b265620b
LV
3167 case NETLINK_KOBJECT_UEVENT:
3168 /* nothing to do: messages are strings */
3169 break;
5ce9bb59
LV
3170 case NETLINK_AUDIT:
3171 fd_trans_register(ret, &target_netlink_audit_trans);
3172 break;
6c5b5645
LV
3173 default:
3174 g_assert_not_reached();
3175 }
0cf22722 3176 }
53d09b76
EI
3177 }
3178 return ret;
3532fa74
FB
3179}
3180
0da46a6e 3181/* do_bind() Must return target values and target errnos. */
992f48a0
BS
3182static abi_long do_bind(int sockfd, abi_ulong target_addr,
3183 socklen_t addrlen)
3532fa74 3184{
8f7aeaf6 3185 void *addr;
917507b0 3186 abi_long ret;
8f7aeaf6 3187
38724253 3188 if ((int)addrlen < 0) {
8f7aeaf6 3189 return -TARGET_EINVAL;
38724253 3190 }
8f7aeaf6 3191
607175e0 3192 addr = alloca(addrlen+1);
3b46e624 3193
7b36f782 3194 ret = target_to_host_sockaddr(sockfd, addr, target_addr, addrlen);
917507b0
AP
3195 if (ret)
3196 return ret;
3197
3532fa74
FB
3198 return get_errno(bind(sockfd, addr, addrlen));
3199}
3200
0da46a6e 3201/* do_connect() Must return target values and target errnos. */
992f48a0
BS
3202static abi_long do_connect(int sockfd, abi_ulong target_addr,
3203 socklen_t addrlen)
3532fa74 3204{
8f7aeaf6 3205 void *addr;
917507b0 3206 abi_long ret;
8f7aeaf6 3207
38724253 3208 if ((int)addrlen < 0) {
8f7aeaf6 3209 return -TARGET_EINVAL;
38724253 3210 }
8f7aeaf6 3211
2dd08dfd 3212 addr = alloca(addrlen+1);
3b46e624 3213
7b36f782 3214 ret = target_to_host_sockaddr(sockfd, addr, target_addr, addrlen);
917507b0
AP
3215 if (ret)
3216 return ret;
3217
2a3c7619 3218 return get_errno(safe_connect(sockfd, addr, addrlen));
3532fa74
FB
3219}
3220
f19e00d7
AG
3221/* do_sendrecvmsg_locked() Must return target values and target errnos. */
3222static abi_long do_sendrecvmsg_locked(int fd, struct target_msghdr *msgp,
3223 int flags, int send)
3532fa74 3224{
6de645c7 3225 abi_long ret, len;
3532fa74 3226 struct msghdr msg;
dab32b32 3227 abi_ulong count;
3532fa74 3228 struct iovec *vec;
992f48a0 3229 abi_ulong target_vec;
3532fa74 3230
3532fa74
FB
3231 if (msgp->msg_name) {
3232 msg.msg_namelen = tswap32(msgp->msg_namelen);
2dd08dfd 3233 msg.msg_name = alloca(msg.msg_namelen+1);
7b36f782
LV
3234 ret = target_to_host_sockaddr(fd, msg.msg_name,
3235 tswapal(msgp->msg_name),
3236 msg.msg_namelen);
26a6fc96
PM
3237 if (ret == -TARGET_EFAULT) {
3238 /* For connected sockets msg_name and msg_namelen must
3239 * be ignored, so returning EFAULT immediately is wrong.
3240 * Instead, pass a bad msg_name to the host kernel, and
3241 * let it decide whether to return EFAULT or not.
3242 */
3243 msg.msg_name = (void *)-1;
3244 } else if (ret) {
f287b2c2 3245 goto out2;
917507b0 3246 }
3532fa74
FB
3247 } else {
3248 msg.msg_name = NULL;
3249 msg.msg_namelen = 0;
3250 }
cbb21eed 3251 msg.msg_controllen = 2 * tswapal(msgp->msg_controllen);
3532fa74 3252 msg.msg_control = alloca(msg.msg_controllen);
1d3d1b23
JS
3253 memset(msg.msg_control, 0, msg.msg_controllen);
3254
3532fa74 3255 msg.msg_flags = tswap32(msgp->msg_flags);
3b46e624 3256
cbb21eed 3257 count = tswapal(msgp->msg_iovlen);
cbb21eed 3258 target_vec = tswapal(msgp->msg_iov);
97b07970
PM
3259
3260 if (count > IOV_MAX) {
3261 /* sendrcvmsg returns a different errno for this condition than
3262 * readv/writev, so we must catch it here before lock_iovec() does.
3263 */
3264 ret = -TARGET_EMSGSIZE;
3265 goto out2;
3266 }
3267
f287b2c2
RH
3268 vec = lock_iovec(send ? VERIFY_READ : VERIFY_WRITE,
3269 target_vec, count, send);
3270 if (vec == NULL) {
3271 ret = -host_to_target_errno(errno);
3f0744f9
HD
3272 /* allow sending packet without any iov, e.g. with MSG_MORE flag */
3273 if (!send || ret) {
3274 goto out2;
3275 }
f287b2c2 3276 }
3532fa74
FB
3277 msg.msg_iovlen = count;
3278 msg.msg_iov = vec;
3b46e624 3279
3532fa74 3280 if (send) {
6c5b5645 3281 if (fd_trans_target_to_host_data(fd)) {
7d61d892
LV
3282 void *host_msg;
3283
3284 host_msg = g_malloc(msg.msg_iov->iov_len);
3285 memcpy(host_msg, msg.msg_iov->iov_base, msg.msg_iov->iov_len);
3286 ret = fd_trans_target_to_host_data(fd)(host_msg,
6c5b5645 3287 msg.msg_iov->iov_len);
7d61d892
LV
3288 if (ret >= 0) {
3289 msg.msg_iov->iov_base = host_msg;
3290 ret = get_errno(safe_sendmsg(fd, &msg, flags));
3291 }
3292 g_free(host_msg);
6c5b5645
LV
3293 } else {
3294 ret = target_to_host_cmsg(&msg, msgp);
7d61d892
LV
3295 if (ret == 0) {
3296 ret = get_errno(safe_sendmsg(fd, &msg, flags));
3297 }
6c5b5645 3298 }
3532fa74 3299 } else {
66687530 3300 ret = get_errno(safe_recvmsg(fd, &msg, flags));
6de645c7
AZ
3301 if (!is_error(ret)) {
3302 len = ret;
6c5b5645
LV
3303 if (fd_trans_host_to_target_data(fd)) {
3304 ret = fd_trans_host_to_target_data(fd)(msg.msg_iov->iov_base,
2a03d3e6 3305 MIN(msg.msg_iov->iov_len, len));
16c81dd5
IZ
3306 }
3307 if (!is_error(ret)) {
6c5b5645
LV
3308 ret = host_to_target_cmsg(msgp, &msg);
3309 }
ca619067
JH
3310 if (!is_error(ret)) {
3311 msgp->msg_namelen = tswap32(msg.msg_namelen);
24894f39 3312 msgp->msg_flags = tswap32(msg.msg_flags);
26a6fc96 3313 if (msg.msg_name != NULL && msg.msg_name != (void *)-1) {
ca619067
JH
3314 ret = host_to_target_sockaddr(tswapal(msgp->msg_name),
3315 msg.msg_name, msg.msg_namelen);
3316 if (ret) {
3317 goto out;
3318 }
3319 }
3320
6de645c7 3321 ret = len;
ca619067 3322 }
6de645c7 3323 }
3532fa74 3324 }
ca619067
JH
3325
3326out:
3f0744f9
HD
3327 if (vec) {
3328 unlock_iovec(vec, target_vec, count, !send);
3329 }
f287b2c2 3330out2:
f19e00d7
AG
3331 return ret;
3332}
3333
3334static abi_long do_sendrecvmsg(int fd, abi_ulong target_msg,
3335 int flags, int send)
3336{
3337 abi_long ret;
3338 struct target_msghdr *msgp;
3339
3340 if (!lock_user_struct(send ? VERIFY_READ : VERIFY_WRITE,
3341 msgp,
3342 target_msg,
3343 send ? 1 : 0)) {
3344 return -TARGET_EFAULT;
3345 }
3346 ret = do_sendrecvmsg_locked(fd, msgp, flags, send);
579a97f7 3347 unlock_user_struct(msgp, target_msg, send ? 0 : 1);
3532fa74
FB
3348 return ret;
3349}
3350
f19e00d7
AG
3351/* We don't rely on the C library to have sendmmsg/recvmmsg support,
3352 * so it might not have this *mmsg-specific flag either.
3353 */
3354#ifndef MSG_WAITFORONE
3355#define MSG_WAITFORONE 0x10000
3356#endif
3357
3358static abi_long do_sendrecvmmsg(int fd, abi_ulong target_msgvec,
3359 unsigned int vlen, unsigned int flags,
3360 int send)
3361{
3362 struct target_mmsghdr *mmsgp;
3363 abi_long ret = 0;
3364 int i;
3365
3366 if (vlen > UIO_MAXIOV) {
3367 vlen = UIO_MAXIOV;
3368 }
3369
3370 mmsgp = lock_user(VERIFY_WRITE, target_msgvec, sizeof(*mmsgp) * vlen, 1);
3371 if (!mmsgp) {
3372 return -TARGET_EFAULT;
3373 }
3374
3375 for (i = 0; i < vlen; i++) {
3376 ret = do_sendrecvmsg_locked(fd, &mmsgp[i].msg_hdr, flags, send);
3377 if (is_error(ret)) {
3378 break;
3379 }
3380 mmsgp[i].msg_len = tswap32(ret);
3381 /* MSG_WAITFORONE turns on MSG_DONTWAIT after one packet */
3382 if (flags & MSG_WAITFORONE) {
3383 flags |= MSG_DONTWAIT;
3384 }
3385 }
3386
3387 unlock_user(mmsgp, target_msgvec, sizeof(*mmsgp) * i);
3388
3389 /* Return number of datagrams sent if we sent any at all;
3390 * otherwise return the error.
3391 */
3392 if (i) {
3393 return i;
3394 }
3395 return ret;
3396}
f19e00d7 3397
a94b4987
PM
3398/* do_accept4() Must return target values and target errnos. */
3399static abi_long do_accept4(int fd, abi_ulong target_addr,
3400 abi_ulong target_addrlen_addr, int flags)
1be9e1dc 3401{
cd813367 3402 socklen_t addrlen, ret_addrlen;
2f619698 3403 void *addr;
992f48a0 3404 abi_long ret;
d25295d4
PJ
3405 int host_flags;
3406
dca4c838
HD
3407 if (flags & ~(TARGET_SOCK_CLOEXEC | TARGET_SOCK_NONBLOCK)) {
3408 return -TARGET_EINVAL;
3409 }
3410
3411 host_flags = 0;
3412 if (flags & TARGET_SOCK_NONBLOCK) {
3413 host_flags |= SOCK_NONBLOCK;
3414 }
3415 if (flags & TARGET_SOCK_CLOEXEC) {
3416 host_flags |= SOCK_CLOEXEC;
3417 }
1be9e1dc 3418
a94b4987 3419 if (target_addr == 0) {
ff6dc130 3420 return get_errno(safe_accept4(fd, NULL, NULL, host_flags));
a94b4987 3421 }
917507b0 3422
e554eb4b 3423 /* linux returns EFAULT if addrlen pointer is invalid */
2f619698 3424 if (get_user_u32(addrlen, target_addrlen_addr))
e554eb4b 3425 return -TARGET_EFAULT;
2f619698 3426
38724253 3427 if ((int)addrlen < 0) {
8f7aeaf6 3428 return -TARGET_EINVAL;
38724253 3429 }
8f7aeaf6 3430
c7169b02 3431 if (!access_ok(thread_cpu, VERIFY_WRITE, target_addr, addrlen)) {
e554eb4b 3432 return -TARGET_EFAULT;
c7169b02 3433 }
917507b0 3434
2f619698
FB
3435 addr = alloca(addrlen);
3436
cd813367
AS
3437 ret_addrlen = addrlen;
3438 ret = get_errno(safe_accept4(fd, addr, &ret_addrlen, host_flags));
1be9e1dc 3439 if (!is_error(ret)) {
cd813367
AS
3440 host_to_target_sockaddr(target_addr, addr, MIN(addrlen, ret_addrlen));
3441 if (put_user_u32(ret_addrlen, target_addrlen_addr)) {
2f619698 3442 ret = -TARGET_EFAULT;
cd813367 3443 }
1be9e1dc
PB
3444 }
3445 return ret;
3446}
3447
0da46a6e 3448/* do_getpeername() Must return target values and target errnos. */
992f48a0 3449static abi_long do_getpeername(int fd, abi_ulong target_addr,
2f619698 3450 abi_ulong target_addrlen_addr)
1be9e1dc 3451{
cd813367 3452 socklen_t addrlen, ret_addrlen;
2f619698 3453 void *addr;
992f48a0 3454 abi_long ret;
1be9e1dc 3455
2f619698
FB
3456 if (get_user_u32(addrlen, target_addrlen_addr))
3457 return -TARGET_EFAULT;
3458
38724253 3459 if ((int)addrlen < 0) {
8f7aeaf6 3460 return -TARGET_EINVAL;
38724253 3461 }
8f7aeaf6 3462
c7169b02 3463 if (!access_ok(thread_cpu, VERIFY_WRITE, target_addr, addrlen)) {
917507b0 3464 return -TARGET_EFAULT;
c7169b02 3465 }
917507b0 3466
2f619698
FB
3467 addr = alloca(addrlen);
3468
cd813367
AS
3469 ret_addrlen = addrlen;
3470 ret = get_errno(getpeername(fd, addr, &ret_addrlen));
1be9e1dc 3471 if (!is_error(ret)) {
cd813367
AS
3472 host_to_target_sockaddr(target_addr, addr, MIN(addrlen, ret_addrlen));
3473 if (put_user_u32(ret_addrlen, target_addrlen_addr)) {
2f619698 3474 ret = -TARGET_EFAULT;
cd813367 3475 }
1be9e1dc
PB
3476 }
3477 return ret;
3478}
3479
0da46a6e 3480/* do_getsockname() Must return target values and target errnos. */
992f48a0 3481static abi_long do_getsockname(int fd, abi_ulong target_addr,
2f619698 3482 abi_ulong target_addrlen_addr)
1be9e1dc 3483{
cd813367 3484 socklen_t addrlen, ret_addrlen;
2f619698 3485 void *addr;
992f48a0 3486 abi_long ret;
1be9e1dc 3487
2f619698
FB
3488 if (get_user_u32(addrlen, target_addrlen_addr))
3489 return -TARGET_EFAULT;
3490
38724253 3491 if ((int)addrlen < 0) {
8f7aeaf6 3492 return -TARGET_EINVAL;
38724253 3493 }
8f7aeaf6 3494
c7169b02 3495 if (!access_ok(thread_cpu, VERIFY_WRITE, target_addr, addrlen)) {
917507b0 3496 return -TARGET_EFAULT;
c7169b02 3497 }
917507b0 3498
2f619698
FB
3499 addr = alloca(addrlen);
3500
cd813367
AS
3501 ret_addrlen = addrlen;
3502 ret = get_errno(getsockname(fd, addr, &ret_addrlen));
1be9e1dc 3503 if (!is_error(ret)) {
cd813367
AS
3504 host_to_target_sockaddr(target_addr, addr, MIN(addrlen, ret_addrlen));
3505 if (put_user_u32(ret_addrlen, target_addrlen_addr)) {
2f619698 3506 ret = -TARGET_EFAULT;
cd813367 3507 }
1be9e1dc
PB
3508 }
3509 return ret;
3510}
3511
0da46a6e 3512/* do_socketpair() Must return target values and target errnos. */
992f48a0 3513static abi_long do_socketpair(int domain, int type, int protocol,
2f619698 3514 abi_ulong target_tab_addr)
1be9e1dc
PB
3515{
3516 int tab[2];
992f48a0 3517 abi_long ret;
1be9e1dc 3518
f651e6ae
PJ
3519 target_to_host_sock_type(&type);
3520
1be9e1dc
PB
3521 ret = get_errno(socketpair(domain, type, protocol, tab));
3522 if (!is_error(ret)) {
2f619698
FB
3523 if (put_user_s32(tab[0], target_tab_addr)
3524 || put_user_s32(tab[1], target_tab_addr + sizeof(tab[0])))
3525 ret = -TARGET_EFAULT;
1be9e1dc
PB
3526 }
3527 return ret;
3528}
3529
0da46a6e 3530/* do_sendto() Must return target values and target errnos. */
992f48a0
BS
3531static abi_long do_sendto(int fd, abi_ulong msg, size_t len, int flags,
3532 abi_ulong target_addr, socklen_t addrlen)
1be9e1dc
PB
3533{
3534 void *addr;
3535 void *host_msg;
7d61d892 3536 void *copy_msg = NULL;
992f48a0 3537 abi_long ret;
1be9e1dc 3538
38724253 3539 if ((int)addrlen < 0) {
8f7aeaf6 3540 return -TARGET_EINVAL;
38724253 3541 }
8f7aeaf6 3542
579a97f7
FB
3543 host_msg = lock_user(VERIFY_READ, msg, len, 1);
3544 if (!host_msg)
3545 return -TARGET_EFAULT;
6c5b5645 3546 if (fd_trans_target_to_host_data(fd)) {
7d61d892
LV
3547 copy_msg = host_msg;
3548 host_msg = g_malloc(len);
3549 memcpy(host_msg, copy_msg, len);
6c5b5645
LV
3550 ret = fd_trans_target_to_host_data(fd)(host_msg, len);
3551 if (ret < 0) {
7d61d892 3552 goto fail;
6c5b5645
LV
3553 }
3554 }
1be9e1dc 3555 if (target_addr) {
2dd08dfd 3556 addr = alloca(addrlen+1);
7b36f782 3557 ret = target_to_host_sockaddr(fd, addr, target_addr, addrlen);
917507b0 3558 if (ret) {
7d61d892 3559 goto fail;
917507b0 3560 }
66687530 3561 ret = get_errno(safe_sendto(fd, host_msg, len, flags, addr, addrlen));
1be9e1dc 3562 } else {
66687530 3563 ret = get_errno(safe_sendto(fd, host_msg, len, flags, NULL, 0));
1be9e1dc 3564 }
7d61d892
LV
3565fail:
3566 if (copy_msg) {
3567 g_free(host_msg);
3568 host_msg = copy_msg;
3569 }
1be9e1dc
PB
3570 unlock_user(host_msg, msg, 0);
3571 return ret;
3572}
3573
0da46a6e 3574/* do_recvfrom() Must return target values and target errnos. */
992f48a0
BS
3575static abi_long do_recvfrom(int fd, abi_ulong msg, size_t len, int flags,
3576 abi_ulong target_addr,
3577 abi_ulong target_addrlen)
1be9e1dc 3578{
cd813367 3579 socklen_t addrlen, ret_addrlen;
1be9e1dc
PB
3580 void *addr;
3581 void *host_msg;
992f48a0 3582 abi_long ret;
1be9e1dc 3583
4a1e6bce
ZR
3584 if (!msg) {
3585 host_msg = NULL;
3586 } else {
3587 host_msg = lock_user(VERIFY_WRITE, msg, len, 0);
3588 if (!host_msg) {
3589 return -TARGET_EFAULT;
3590 }
3591 }
1be9e1dc 3592 if (target_addr) {
2f619698
FB
3593 if (get_user_u32(addrlen, target_addrlen)) {
3594 ret = -TARGET_EFAULT;
3595 goto fail;
3596 }
38724253 3597 if ((int)addrlen < 0) {
8f7aeaf6
AJ
3598 ret = -TARGET_EINVAL;
3599 goto fail;
3600 }
1be9e1dc 3601 addr = alloca(addrlen);
cd813367 3602 ret_addrlen = addrlen;
66687530 3603 ret = get_errno(safe_recvfrom(fd, host_msg, len, flags,
cd813367 3604 addr, &ret_addrlen));
1be9e1dc
PB
3605 } else {
3606 addr = NULL; /* To keep compiler quiet. */
cd813367 3607 addrlen = 0; /* To keep compiler quiet. */
66687530 3608 ret = get_errno(safe_recvfrom(fd, host_msg, len, flags, NULL, 0));
1be9e1dc
PB
3609 }
3610 if (!is_error(ret)) {
c35e1f9c 3611 if (fd_trans_host_to_target_data(fd)) {
2a03d3e6
LV
3612 abi_long trans;
3613 trans = fd_trans_host_to_target_data(fd)(host_msg, MIN(ret, len));
3614 if (is_error(trans)) {
3615 ret = trans;
3616 goto fail;
3617 }
c35e1f9c 3618 }
1be9e1dc 3619 if (target_addr) {
cd813367
AS
3620 host_to_target_sockaddr(target_addr, addr,
3621 MIN(addrlen, ret_addrlen));
3622 if (put_user_u32(ret_addrlen, target_addrlen)) {
2f619698
FB
3623 ret = -TARGET_EFAULT;
3624 goto fail;
3625 }
1be9e1dc
PB
3626 }
3627 unlock_user(host_msg, msg, len);
3628 } else {
2f619698 3629fail:
1be9e1dc
PB
3630 unlock_user(host_msg, msg, 0);
3631 }
3632 return ret;
3633}
3634
32407103 3635#ifdef TARGET_NR_socketcall
ff71a454 3636/* do_socketcall() must return target values and target errnos. */
992f48a0 3637static abi_long do_socketcall(int num, abi_ulong vptr)
31e31b8a 3638{
ff71a454
AM
3639 static const unsigned nargs[] = { /* number of arguments per operation */
3640 [TARGET_SYS_SOCKET] = 3, /* domain, type, protocol */
3641 [TARGET_SYS_BIND] = 3, /* fd, addr, addrlen */
3642 [TARGET_SYS_CONNECT] = 3, /* fd, addr, addrlen */
3643 [TARGET_SYS_LISTEN] = 2, /* fd, backlog */
3644 [TARGET_SYS_ACCEPT] = 3, /* fd, addr, addrlen */
3645 [TARGET_SYS_GETSOCKNAME] = 3, /* fd, addr, addrlen */
3646 [TARGET_SYS_GETPEERNAME] = 3, /* fd, addr, addrlen */
3647 [TARGET_SYS_SOCKETPAIR] = 4, /* domain, type, protocol, tab */
3648 [TARGET_SYS_SEND] = 4, /* fd, msg, len, flags */
3649 [TARGET_SYS_RECV] = 4, /* fd, msg, len, flags */
3650 [TARGET_SYS_SENDTO] = 6, /* fd, msg, len, flags, addr, addrlen */
3651 [TARGET_SYS_RECVFROM] = 6, /* fd, msg, len, flags, addr, addrlen */
3652 [TARGET_SYS_SHUTDOWN] = 2, /* fd, how */
3653 [TARGET_SYS_SETSOCKOPT] = 5, /* fd, level, optname, optval, optlen */
3654 [TARGET_SYS_GETSOCKOPT] = 5, /* fd, level, optname, optval, optlen */
3655 [TARGET_SYS_SENDMSG] = 3, /* fd, msg, flags */
3656 [TARGET_SYS_RECVMSG] = 3, /* fd, msg, flags */
3657 [TARGET_SYS_ACCEPT4] = 4, /* fd, addr, addrlen, flags */
3658 [TARGET_SYS_RECVMMSG] = 4, /* fd, msgvec, vlen, flags */
3659 [TARGET_SYS_SENDMMSG] = 4, /* fd, msgvec, vlen, flags */
62dc90c6
MT
3660 };
3661 abi_long a[6]; /* max 6 args */
ff71a454 3662 unsigned i;
62dc90c6 3663
ff71a454
AM
3664 /* check the range of the first argument num */
3665 /* (TARGET_SYS_SENDMMSG is the highest among TARGET_SYS_xxx) */
3666 if (num < 1 || num > TARGET_SYS_SENDMMSG) {
3667 return -TARGET_EINVAL;
3668 }
3669 /* ensure we have space for args */
3670 if (nargs[num] > ARRAY_SIZE(a)) {
3671 return -TARGET_EINVAL;
3672 }
3673 /* collect the arguments in a[] according to nargs[] */
3674 for (i = 0; i < nargs[num]; ++i) {
3675 if (get_user_ual(a[i], vptr + i * sizeof(abi_long)) != 0) {
3676 return -TARGET_EFAULT;
31e31b8a 3677 }
62dc90c6 3678 }
ff71a454 3679 /* now when we have the args, invoke the appropriate underlying function */
62dc90c6 3680 switch (num) {
ff71a454 3681 case TARGET_SYS_SOCKET: /* domain, type, protocol */
62dc90c6 3682 return do_socket(a[0], a[1], a[2]);
ff71a454 3683 case TARGET_SYS_BIND: /* sockfd, addr, addrlen */
62dc90c6 3684 return do_bind(a[0], a[1], a[2]);
ff71a454 3685 case TARGET_SYS_CONNECT: /* sockfd, addr, addrlen */
62dc90c6 3686 return do_connect(a[0], a[1], a[2]);
ff71a454 3687 case TARGET_SYS_LISTEN: /* sockfd, backlog */
62dc90c6 3688 return get_errno(listen(a[0], a[1]));
ff71a454 3689 case TARGET_SYS_ACCEPT: /* sockfd, addr, addrlen */
62dc90c6 3690 return do_accept4(a[0], a[1], a[2], 0);
ff71a454 3691 case TARGET_SYS_GETSOCKNAME: /* sockfd, addr, addrlen */
62dc90c6 3692 return do_getsockname(a[0], a[1], a[2]);
ff71a454 3693 case TARGET_SYS_GETPEERNAME: /* sockfd, addr, addrlen */
62dc90c6 3694 return do_getpeername(a[0], a[1], a[2]);
ff71a454 3695 case TARGET_SYS_SOCKETPAIR: /* domain, type, protocol, tab */
62dc90c6 3696 return do_socketpair(a[0], a[1], a[2], a[3]);
ff71a454 3697 case TARGET_SYS_SEND: /* sockfd, msg, len, flags */
62dc90c6 3698 return do_sendto(a[0], a[1], a[2], a[3], 0, 0);
ff71a454 3699 case TARGET_SYS_RECV: /* sockfd, msg, len, flags */
62dc90c6 3700 return do_recvfrom(a[0], a[1], a[2], a[3], 0, 0);
ff71a454 3701 case TARGET_SYS_SENDTO: /* sockfd, msg, len, flags, addr, addrlen */
62dc90c6 3702 return do_sendto(a[0], a[1], a[2], a[3], a[4], a[5]);
ff71a454 3703 case TARGET_SYS_RECVFROM: /* sockfd, msg, len, flags, addr, addrlen */
62dc90c6 3704 return do_recvfrom(a[0], a[1], a[2], a[3], a[4], a[5]);
ff71a454 3705 case TARGET_SYS_SHUTDOWN: /* sockfd, how */
62dc90c6 3706 return get_errno(shutdown(a[0], a[1]));
ff71a454
AM
3707 case TARGET_SYS_SETSOCKOPT: /* sockfd, level, optname, optval, optlen */
3708 return do_setsockopt(a[0], a[1], a[2], a[3], a[4]);
3709 case TARGET_SYS_GETSOCKOPT: /* sockfd, level, optname, optval, optlen */
3710 return do_getsockopt(a[0], a[1], a[2], a[3], a[4]);
3711 case TARGET_SYS_SENDMSG: /* sockfd, msg, flags */
62dc90c6 3712 return do_sendrecvmsg(a[0], a[1], a[2], 1);
ff71a454 3713 case TARGET_SYS_RECVMSG: /* sockfd, msg, flags */
62dc90c6 3714 return do_sendrecvmsg(a[0], a[1], a[2], 0);
ff71a454
AM
3715 case TARGET_SYS_ACCEPT4: /* sockfd, addr, addrlen, flags */
3716 return do_accept4(a[0], a[1], a[2], a[3]);
3717 case TARGET_SYS_RECVMMSG: /* sockfd, msgvec, vlen, flags */
5a53dc50 3718 return do_sendrecvmmsg(a[0], a[1], a[2], a[3], 0);
ff71a454
AM
3719 case TARGET_SYS_SENDMMSG: /* sockfd, msgvec, vlen, flags */
3720 return do_sendrecvmmsg(a[0], a[1], a[2], a[3], 1);
31e31b8a 3721 default:
39be5350 3722 qemu_log_mask(LOG_UNIMP, "Unsupported socketcall: %d\n", num);
ff71a454 3723 return -TARGET_EINVAL;
31e31b8a 3724 }
31e31b8a 3725}
32407103 3726#endif
31e31b8a 3727
005eb2ae
PM
3728#ifndef TARGET_SEMID64_DS
3729/* asm-generic version of this struct */
3730struct target_semid64_ds
3eb6b044
TS
3731{
3732 struct target_ipc_perm sem_perm;
992f48a0 3733 abi_ulong sem_otime;
005eb2ae 3734#if TARGET_ABI_BITS == 32
992f48a0 3735 abi_ulong __unused1;
03527344 3736#endif
992f48a0 3737 abi_ulong sem_ctime;
005eb2ae 3738#if TARGET_ABI_BITS == 32
992f48a0 3739 abi_ulong __unused2;
03527344 3740#endif
992f48a0
BS
3741 abi_ulong sem_nsems;
3742 abi_ulong __unused3;
3743 abi_ulong __unused4;
3eb6b044 3744};
005eb2ae 3745#endif
3eb6b044 3746
579a97f7
FB
3747static inline abi_long target_to_host_ipc_perm(struct ipc_perm *host_ip,
3748 abi_ulong target_addr)
3eb6b044
TS
3749{
3750 struct target_ipc_perm *target_ip;
005eb2ae 3751 struct target_semid64_ds *target_sd;
3eb6b044 3752
579a97f7
FB
3753 if (!lock_user_struct(VERIFY_READ, target_sd, target_addr, 1))
3754 return -TARGET_EFAULT;
e8bbe36c 3755 target_ip = &(target_sd->sem_perm);
55a2b163
PJ
3756 host_ip->__key = tswap32(target_ip->__key);
3757 host_ip->uid = tswap32(target_ip->uid);
3758 host_ip->gid = tswap32(target_ip->gid);
3759 host_ip->cuid = tswap32(target_ip->cuid);
3760 host_ip->cgid = tswap32(target_ip->cgid);
3761#if defined(TARGET_ALPHA) || defined(TARGET_MIPS) || defined(TARGET_PPC)
3762 host_ip->mode = tswap32(target_ip->mode);
3763#else
cbb21eed 3764 host_ip->mode = tswap16(target_ip->mode);
55a2b163
PJ
3765#endif
3766#if defined(TARGET_PPC)
3767 host_ip->__seq = tswap32(target_ip->__seq);
3768#else
3769 host_ip->__seq = tswap16(target_ip->__seq);
3770#endif
3eb6b044 3771 unlock_user_struct(target_sd, target_addr, 0);
579a97f7 3772 return 0;
3eb6b044
TS
3773}
3774
579a97f7
FB
3775static inline abi_long host_to_target_ipc_perm(abi_ulong target_addr,
3776 struct ipc_perm *host_ip)
3eb6b044
TS
3777{
3778 struct target_ipc_perm *target_ip;
005eb2ae 3779 struct target_semid64_ds *target_sd;
3eb6b044 3780
579a97f7
FB
3781 if (!lock_user_struct(VERIFY_WRITE, target_sd, target_addr, 0))
3782 return -TARGET_EFAULT;
3eb6b044 3783 target_ip = &(target_sd->sem_perm);
55a2b163
PJ
3784 target_ip->__key = tswap32(host_ip->__key);
3785 target_ip->uid = tswap32(host_ip->uid);
3786 target_ip->gid = tswap32(host_ip->gid);
3787 target_ip->cuid = tswap32(host_ip->cuid);
3788 target_ip->cgid = tswap32(host_ip->cgid);
3789#if defined(TARGET_ALPHA) || defined(TARGET_MIPS) || defined(TARGET_PPC)
3790 target_ip->mode = tswap32(host_ip->mode);
3791#else
cbb21eed 3792 target_ip->mode = tswap16(host_ip->mode);
55a2b163
PJ
3793#endif
3794#if defined(TARGET_PPC)
3795 target_ip->__seq = tswap32(host_ip->__seq);
3796#else
3797 target_ip->__seq = tswap16(host_ip->__seq);
3798#endif
3eb6b044 3799 unlock_user_struct(target_sd, target_addr, 1);
579a97f7 3800 return 0;
3eb6b044
TS
3801}
3802
579a97f7
FB
3803static inline abi_long target_to_host_semid_ds(struct semid_ds *host_sd,
3804 abi_ulong target_addr)
3eb6b044 3805{
005eb2ae 3806 struct target_semid64_ds *target_sd;
3eb6b044 3807
579a97f7
FB
3808 if (!lock_user_struct(VERIFY_READ, target_sd, target_addr, 1))
3809 return -TARGET_EFAULT;
e5289087
AJ
3810 if (target_to_host_ipc_perm(&(host_sd->sem_perm),target_addr))
3811 return -TARGET_EFAULT;
cbb21eed
MB
3812 host_sd->sem_nsems = tswapal(target_sd->sem_nsems);
3813 host_sd->sem_otime = tswapal(target_sd->sem_otime);
3814 host_sd->sem_ctime = tswapal(target_sd->sem_ctime);
3eb6b044 3815 unlock_user_struct(target_sd, target_addr, 0);
579a97f7 3816 return 0;
3eb6b044
TS
3817}
3818
579a97f7
FB
3819static inline abi_long host_to_target_semid_ds(abi_ulong target_addr,
3820 struct semid_ds *host_sd)
3eb6b044 3821{
005eb2ae 3822 struct target_semid64_ds *target_sd;
3eb6b044 3823
579a97f7
FB
3824 if (!lock_user_struct(VERIFY_WRITE, target_sd, target_addr, 0))
3825 return -TARGET_EFAULT;
e5289087 3826 if (host_to_target_ipc_perm(target_addr,&(host_sd->sem_perm)))
3a93113a 3827 return -TARGET_EFAULT;
cbb21eed
MB
3828 target_sd->sem_nsems = tswapal(host_sd->sem_nsems);
3829 target_sd->sem_otime = tswapal(host_sd->sem_otime);
3830 target_sd->sem_ctime = tswapal(host_sd->sem_ctime);
3eb6b044 3831 unlock_user_struct(target_sd, target_addr, 1);
579a97f7 3832 return 0;
3eb6b044
TS
3833}
3834
e5289087
AJ
3835struct target_seminfo {
3836 int semmap;
3837 int semmni;
3838 int semmns;
3839 int semmnu;
3840 int semmsl;
3841 int semopm;
3842 int semume;
3843 int semusz;
3844 int semvmx;
3845 int semaem;
3846};
3847
3848static inline abi_long host_to_target_seminfo(abi_ulong target_addr,
3849 struct seminfo *host_seminfo)
3850{
3851 struct target_seminfo *target_seminfo;
3852 if (!lock_user_struct(VERIFY_WRITE, target_seminfo, target_addr, 0))
3853 return -TARGET_EFAULT;
3854 __put_user(host_seminfo->semmap, &target_seminfo->semmap);
3855 __put_user(host_seminfo->semmni, &target_seminfo->semmni);
3856 __put_user(host_seminfo->semmns, &target_seminfo->semmns);
3857 __put_user(host_seminfo->semmnu, &target_seminfo->semmnu);
3858 __put_user(host_seminfo->semmsl, &target_seminfo->semmsl);
3859 __put_user(host_seminfo->semopm, &target_seminfo->semopm);
3860 __put_user(host_seminfo->semume, &target_seminfo->semume);
3861 __put_user(host_seminfo->semusz, &target_seminfo->semusz);
3862 __put_user(host_seminfo->semvmx, &target_seminfo->semvmx);
3863 __put_user(host_seminfo->semaem, &target_seminfo->semaem);
3864 unlock_user_struct(target_seminfo, target_addr, 1);
3865 return 0;
3866}
3867
fa294816
TS
3868union semun {
3869 int val;
3eb6b044 3870 struct semid_ds *buf;
fa294816 3871 unsigned short *array;
e5289087 3872 struct seminfo *__buf;
fa294816
TS
3873};
3874
3eb6b044
TS
3875union target_semun {
3876 int val;
e5289087
AJ
3877 abi_ulong buf;
3878 abi_ulong array;
3879 abi_ulong __buf;
3eb6b044
TS
3880};
3881
e5289087
AJ
3882static inline abi_long target_to_host_semarray(int semid, unsigned short **host_array,
3883 abi_ulong target_addr)
3eb6b044 3884{
e5289087
AJ
3885 int nsems;
3886 unsigned short *array;
3887 union semun semun;
3888 struct semid_ds semid_ds;
3889 int i, ret;
3eb6b044 3890
e5289087
AJ
3891 semun.buf = &semid_ds;
3892
3893 ret = semctl(semid, 0, IPC_STAT, semun);
3894 if (ret == -1)
3895 return get_errno(ret);
3896
3897 nsems = semid_ds.sem_nsems;
3898
0e173b24 3899 *host_array = g_try_new(unsigned short, nsems);
69d4c703
PM
3900 if (!*host_array) {
3901 return -TARGET_ENOMEM;
3902 }
e5289087
AJ
3903 array = lock_user(VERIFY_READ, target_addr,
3904 nsems*sizeof(unsigned short), 1);
69d4c703 3905 if (!array) {
0e173b24 3906 g_free(*host_array);
e5289087 3907 return -TARGET_EFAULT;
69d4c703 3908 }
e5289087
AJ
3909
3910 for(i=0; i<nsems; i++) {
3911 __get_user((*host_array)[i], &array[i]);
3eb6b044 3912 }
e5289087
AJ
3913 unlock_user(array, target_addr, 0);
3914
579a97f7 3915 return 0;
3eb6b044
TS
3916}
3917
e5289087
AJ
3918static inline abi_long host_to_target_semarray(int semid, abi_ulong target_addr,
3919 unsigned short **host_array)
3eb6b044 3920{
e5289087
AJ
3921 int nsems;
3922 unsigned short *array;
3923 union semun semun;
3924 struct semid_ds semid_ds;
3925 int i, ret;
3eb6b044 3926
e5289087
AJ
3927 semun.buf = &semid_ds;
3928
3929 ret = semctl(semid, 0, IPC_STAT, semun);
3930 if (ret == -1)
3931 return get_errno(ret);
3932
3933 nsems = semid_ds.sem_nsems;
3934
3935 array = lock_user(VERIFY_WRITE, target_addr,
3936 nsems*sizeof(unsigned short), 0);
3937 if (!array)
3938 return -TARGET_EFAULT;
3939
3940 for(i=0; i<nsems; i++) {
3941 __put_user((*host_array)[i], &array[i]);
3eb6b044 3942 }
0e173b24 3943 g_free(*host_array);
e5289087
AJ
3944 unlock_user(array, target_addr, 1);
3945
579a97f7 3946 return 0;
3eb6b044
TS
3947}
3948
e5289087 3949static inline abi_long do_semctl(int semid, int semnum, int cmd,
d1c002b6 3950 abi_ulong target_arg)
3eb6b044 3951{
d1c002b6 3952 union target_semun target_su = { .buf = target_arg };
3eb6b044
TS
3953 union semun arg;
3954 struct semid_ds dsarg;
7b8118e8 3955 unsigned short *array = NULL;
e5289087
AJ
3956 struct seminfo seminfo;
3957 abi_long ret = -TARGET_EINVAL;
3958 abi_long err;
3959 cmd &= 0xff;
3eb6b044
TS
3960
3961 switch( cmd ) {
3962 case GETVAL:
3eb6b044 3963 case SETVAL:
5464baec
TM
3964 /* In 64 bit cross-endian situations, we will erroneously pick up
3965 * the wrong half of the union for the "val" element. To rectify
3966 * this, the entire 8-byte structure is byteswapped, followed by
3967 * a swap of the 4 byte val field. In other cases, the data is
3968 * already in proper host byte order. */
3969 if (sizeof(target_su.val) != (sizeof(target_su.buf))) {
3970 target_su.buf = tswapal(target_su.buf);
3971 arg.val = tswap32(target_su.val);
3972 } else {
3973 arg.val = target_su.val;
3974 }
e5289087 3975 ret = get_errno(semctl(semid, semnum, cmd, arg));
3eb6b044
TS
3976 break;
3977 case GETALL:
3eb6b044 3978 case SETALL:
e5289087
AJ
3979 err = target_to_host_semarray(semid, &array, target_su.array);
3980 if (err)
3981 return err;
3982 arg.array = array;
3983 ret = get_errno(semctl(semid, semnum, cmd, arg));
3984 err = host_to_target_semarray(semid, target_su.array, &array);
3985 if (err)
3986 return err;
3eb6b044
TS
3987 break;
3988 case IPC_STAT:
3eb6b044 3989 case IPC_SET:
e5289087
AJ
3990 case SEM_STAT:
3991 err = target_to_host_semid_ds(&dsarg, target_su.buf);
3992 if (err)
3993 return err;
3994 arg.buf = &dsarg;
3995 ret = get_errno(semctl(semid, semnum, cmd, arg));
3996 err = host_to_target_semid_ds(target_su.buf, &dsarg);
3997 if (err)
3998 return err;
3999 break;
4000 case IPC_INFO:
4001 case SEM_INFO:
4002 arg.__buf = &seminfo;
4003 ret = get_errno(semctl(semid, semnum, cmd, arg));
4004 err = host_to_target_seminfo(target_su.__buf, &seminfo);
4005 if (err)
4006 return err;
4007 break;
4008 case IPC_RMID:
4009 case GETPID:
4010 case GETNCNT:
4011 case GETZCNT:
4012 ret = get_errno(semctl(semid, semnum, cmd, NULL));
3eb6b044 4013 break;
3eb6b044
TS
4014 }
4015
4016 return ret;
4017}
4018
e5289087
AJ
4019struct target_sembuf {
4020 unsigned short sem_num;
4021 short sem_op;
4022 short sem_flg;
4023};
4024
4025static inline abi_long target_to_host_sembuf(struct sembuf *host_sembuf,
4026 abi_ulong target_addr,
4027 unsigned nsops)
4028{
4029 struct target_sembuf *target_sembuf;
4030 int i;
4031
4032 target_sembuf = lock_user(VERIFY_READ, target_addr,
4033 nsops*sizeof(struct target_sembuf), 1);
4034 if (!target_sembuf)
4035 return -TARGET_EFAULT;
4036
4037 for(i=0; i<nsops; i++) {
4038 __get_user(host_sembuf[i].sem_num, &target_sembuf[i].sem_num);
4039 __get_user(host_sembuf[i].sem_op, &target_sembuf[i].sem_op);
4040 __get_user(host_sembuf[i].sem_flg, &target_sembuf[i].sem_flg);
4041 }
4042
4043 unlock_user(target_sembuf, target_addr, 0);
4044
4045 return 0;
4046}
4047
d8c08b1e 4048#if defined(TARGET_NR_ipc) || defined(TARGET_NR_semop) || \
cac46eb0 4049 defined(TARGET_NR_semtimedop) || defined(TARGET_NR_semtimedop_time64)
d8c08b1e
MK
4050
4051/*
4052 * This macro is required to handle the s390 variants, which passes the
4053 * arguments in a different order than default.
4054 */
4055#ifdef __s390x__
4056#define SEMTIMEDOP_IPC_ARGS(__nsops, __sops, __timeout) \
4057 (__nsops), (__timeout), (__sops)
4058#else
4059#define SEMTIMEDOP_IPC_ARGS(__nsops, __sops, __timeout) \
4060 (__nsops), 0, (__sops), (__timeout)
4061#endif
4062
4063static inline abi_long do_semtimedop(int semid,
4064 abi_long ptr,
4065 unsigned nsops,
cac46eb0 4066 abi_long timeout, bool time64)
e5289087 4067{
0a7ec849 4068 struct sembuf *sops;
d8c08b1e 4069 struct timespec ts, *pts = NULL;
524fa340 4070 abi_long ret;
e5289087 4071
d8c08b1e
MK
4072 if (timeout) {
4073 pts = &ts;
cac46eb0
FB
4074 if (time64) {
4075 if (target_to_host_timespec64(pts, timeout)) {
4076 return -TARGET_EFAULT;
4077 }
4078 } else {
4079 if (target_to_host_timespec(pts, timeout)) {
4080 return -TARGET_EFAULT;
4081 }
d8c08b1e
MK
4082 }
4083 }
4084
0a7ec849
FB
4085 if (nsops > TARGET_SEMOPM) {
4086 return -TARGET_E2BIG;
4087 }
4088
4089 sops = g_new(struct sembuf, nsops);
4090
4091 if (target_to_host_sembuf(sops, ptr, nsops)) {
4092 g_free(sops);
e5289087 4093 return -TARGET_EFAULT;
0a7ec849 4094 }
e5289087 4095
524fa340
LV
4096 ret = -TARGET_ENOSYS;
4097#ifdef __NR_semtimedop
d8c08b1e 4098 ret = get_errno(safe_semtimedop(semid, sops, nsops, pts));
524fa340
LV
4099#endif
4100#ifdef __NR_ipc
4101 if (ret == -TARGET_ENOSYS) {
d8c08b1e
MK
4102 ret = get_errno(safe_ipc(IPCOP_semtimedop, semid,
4103 SEMTIMEDOP_IPC_ARGS(nsops, sops, (long)pts)));
524fa340
LV
4104 }
4105#endif
0a7ec849 4106 g_free(sops);
524fa340 4107 return ret;
e5289087 4108}
d8c08b1e 4109#endif
e5289087 4110
1bc012f6
TS
4111struct target_msqid_ds
4112{
1c54ff97
AJ
4113 struct target_ipc_perm msg_perm;
4114 abi_ulong msg_stime;
4115#if TARGET_ABI_BITS == 32
4116 abi_ulong __unused1;
4117#endif
4118 abi_ulong msg_rtime;
4119#if TARGET_ABI_BITS == 32
4120 abi_ulong __unused2;
4121#endif
4122 abi_ulong msg_ctime;
4123#if TARGET_ABI_BITS == 32
4124 abi_ulong __unused3;
4125#endif
4126 abi_ulong __msg_cbytes;
4127 abi_ulong msg_qnum;
4128 abi_ulong msg_qbytes;
4129 abi_ulong msg_lspid;
4130 abi_ulong msg_lrpid;
4131 abi_ulong __unused4;
4132 abi_ulong __unused5;
1bc012f6
TS
4133};
4134
579a97f7
FB
4135static inline abi_long target_to_host_msqid_ds(struct msqid_ds *host_md,
4136 abi_ulong target_addr)
1bc012f6
TS
4137{
4138 struct target_msqid_ds *target_md;
4139
579a97f7
FB
4140 if (!lock_user_struct(VERIFY_READ, target_md, target_addr, 1))
4141 return -TARGET_EFAULT;
1c54ff97
AJ
4142 if (target_to_host_ipc_perm(&(host_md->msg_perm),target_addr))
4143 return -TARGET_EFAULT;
cbb21eed
MB
4144 host_md->msg_stime = tswapal(target_md->msg_stime);
4145 host_md->msg_rtime = tswapal(target_md->msg_rtime);
4146 host_md->msg_ctime = tswapal(target_md->msg_ctime);
4147 host_md->__msg_cbytes = tswapal(target_md->__msg_cbytes);
4148 host_md->msg_qnum = tswapal(target_md->msg_qnum);
4149 host_md->msg_qbytes = tswapal(target_md->msg_qbytes);
4150 host_md->msg_lspid = tswapal(target_md->msg_lspid);
4151 host_md->msg_lrpid = tswapal(target_md->msg_lrpid);
1bc012f6 4152 unlock_user_struct(target_md, target_addr, 0);
579a97f7 4153 return 0;
1bc012f6
TS
4154}
4155
579a97f7
FB
4156static inline abi_long host_to_target_msqid_ds(abi_ulong target_addr,
4157 struct msqid_ds *host_md)
1bc012f6
TS
4158{
4159 struct target_msqid_ds *target_md;
4160
579a97f7
FB
4161 if (!lock_user_struct(VERIFY_WRITE, target_md, target_addr, 0))
4162 return -TARGET_EFAULT;
1c54ff97
AJ
4163 if (host_to_target_ipc_perm(target_addr,&(host_md->msg_perm)))
4164 return -TARGET_EFAULT;
cbb21eed
MB
4165 target_md->msg_stime = tswapal(host_md->msg_stime);
4166 target_md->msg_rtime = tswapal(host_md->msg_rtime);
4167 target_md->msg_ctime = tswapal(host_md->msg_ctime);
4168 target_md->__msg_cbytes = tswapal(host_md->__msg_cbytes);
4169 target_md->msg_qnum = tswapal(host_md->msg_qnum);
4170 target_md->msg_qbytes = tswapal(host_md->msg_qbytes);
4171 target_md->msg_lspid = tswapal(host_md->msg_lspid);
4172 target_md->msg_lrpid = tswapal(host_md->msg_lrpid);
1bc012f6 4173 unlock_user_struct(target_md, target_addr, 1);
579a97f7 4174 return 0;
1bc012f6
TS
4175}
4176
1c54ff97
AJ
4177struct target_msginfo {
4178 int msgpool;
4179 int msgmap;
4180 int msgmax;
4181 int msgmnb;
4182 int msgmni;
4183 int msgssz;
4184 int msgtql;
4185 unsigned short int msgseg;
4186};
4187
4188static inline abi_long host_to_target_msginfo(abi_ulong target_addr,
4189 struct msginfo *host_msginfo)
4190{
4191 struct target_msginfo *target_msginfo;
4192 if (!lock_user_struct(VERIFY_WRITE, target_msginfo, target_addr, 0))
4193 return -TARGET_EFAULT;
4194 __put_user(host_msginfo->msgpool, &target_msginfo->msgpool);
4195 __put_user(host_msginfo->msgmap, &target_msginfo->msgmap);
4196 __put_user(host_msginfo->msgmax, &target_msginfo->msgmax);
4197 __put_user(host_msginfo->msgmnb, &target_msginfo->msgmnb);
4198 __put_user(host_msginfo->msgmni, &target_msginfo->msgmni);
4199 __put_user(host_msginfo->msgssz, &target_msginfo->msgssz);
4200 __put_user(host_msginfo->msgtql, &target_msginfo->msgtql);
4201 __put_user(host_msginfo->msgseg, &target_msginfo->msgseg);
4202 unlock_user_struct(target_msginfo, target_addr, 1);
00b229ac 4203 return 0;
1c54ff97
AJ
4204}
4205
4206static inline abi_long do_msgctl(int msgid, int cmd, abi_long ptr)
1bc012f6
TS
4207{
4208 struct msqid_ds dsarg;
1c54ff97
AJ
4209 struct msginfo msginfo;
4210 abi_long ret = -TARGET_EINVAL;
4211
4212 cmd &= 0xff;
4213
4214 switch (cmd) {
1bc012f6
TS
4215 case IPC_STAT:
4216 case IPC_SET:
1c54ff97
AJ
4217 case MSG_STAT:
4218 if (target_to_host_msqid_ds(&dsarg,ptr))
4219 return -TARGET_EFAULT;
4220 ret = get_errno(msgctl(msgid, cmd, &dsarg));
4221 if (host_to_target_msqid_ds(ptr,&dsarg))
4222 return -TARGET_EFAULT;
4223 break;
4224 case IPC_RMID:
4225 ret = get_errno(msgctl(msgid, cmd, NULL));
4226 break;
4227 case IPC_INFO:
4228 case MSG_INFO:
4229 ret = get_errno(msgctl(msgid, cmd, (struct msqid_ds *)&msginfo));
4230 if (host_to_target_msginfo(ptr, &msginfo))
4231 return -TARGET_EFAULT;
4232 break;
1bc012f6 4233 }
1c54ff97 4234
1bc012f6
TS
4235 return ret;
4236}
4237
4238struct target_msgbuf {
1c54ff97
AJ
4239 abi_long mtype;
4240 char mtext[1];
1bc012f6
TS
4241};
4242
992f48a0 4243static inline abi_long do_msgsnd(int msqid, abi_long msgp,
edcc5f9d 4244 ssize_t msgsz, int msgflg)
1bc012f6
TS
4245{
4246 struct target_msgbuf *target_mb;
4247 struct msgbuf *host_mb;
992f48a0 4248 abi_long ret = 0;
1bc012f6 4249
edcc5f9d
TM
4250 if (msgsz < 0) {
4251 return -TARGET_EINVAL;
4252 }
4253
579a97f7
FB
4254 if (!lock_user_struct(VERIFY_READ, target_mb, msgp, 0))
4255 return -TARGET_EFAULT;
0e173b24 4256 host_mb = g_try_malloc(msgsz + sizeof(long));
29e03fcb
HZ
4257 if (!host_mb) {
4258 unlock_user_struct(target_mb, msgp, 0);
4259 return -TARGET_ENOMEM;
4260 }
cbb21eed 4261 host_mb->mtype = (abi_long) tswapal(target_mb->mtype);
1c54ff97 4262 memcpy(host_mb->mtext, target_mb->mtext, msgsz);
524fa340
LV
4263 ret = -TARGET_ENOSYS;
4264#ifdef __NR_msgsnd
89f9fe44 4265 ret = get_errno(safe_msgsnd(msqid, host_mb, msgsz, msgflg));
524fa340
LV
4266#endif
4267#ifdef __NR_ipc
4268 if (ret == -TARGET_ENOSYS) {
d8c08b1e
MK
4269#ifdef __s390x__
4270 ret = get_errno(safe_ipc(IPCOP_msgsnd, msqid, msgsz, msgflg,
4271 host_mb));
4272#else
524fa340
LV
4273 ret = get_errno(safe_ipc(IPCOP_msgsnd, msqid, msgsz, msgflg,
4274 host_mb, 0));
d8c08b1e 4275#endif
524fa340
LV
4276 }
4277#endif
0e173b24 4278 g_free(host_mb);
1bc012f6
TS
4279 unlock_user_struct(target_mb, msgp, 0);
4280
4281 return ret;
4282}
4283
d8c08b1e
MK
4284#ifdef __NR_ipc
4285#if defined(__sparc__)
4286/* SPARC for msgrcv it does not use the kludge on final 2 arguments. */
4287#define MSGRCV_ARGS(__msgp, __msgtyp) __msgp, __msgtyp
4288#elif defined(__s390x__)
4289/* The s390 sys_ipc variant has only five parameters. */
4290#define MSGRCV_ARGS(__msgp, __msgtyp) \
4291 ((long int[]){(long int)__msgp, __msgtyp})
4292#else
4293#define MSGRCV_ARGS(__msgp, __msgtyp) \
4294 ((long int[]){(long int)__msgp, __msgtyp}), 0
4295#endif
4296#endif
4297
992f48a0 4298static inline abi_long do_msgrcv(int msqid, abi_long msgp,
99874f65 4299 ssize_t msgsz, abi_long msgtyp,
992f48a0 4300 int msgflg)
1bc012f6
TS
4301{
4302 struct target_msgbuf *target_mb;
579a97f7 4303 char *target_mtext;
1bc012f6 4304 struct msgbuf *host_mb;
992f48a0 4305 abi_long ret = 0;
1bc012f6 4306
99874f65
PM
4307 if (msgsz < 0) {
4308 return -TARGET_EINVAL;
4309 }
4310
579a97f7
FB
4311 if (!lock_user_struct(VERIFY_WRITE, target_mb, msgp, 0))
4312 return -TARGET_EFAULT;
1c54ff97 4313
415d8471
PM
4314 host_mb = g_try_malloc(msgsz + sizeof(long));
4315 if (!host_mb) {
4316 ret = -TARGET_ENOMEM;
4317 goto end;
4318 }
524fa340
LV
4319 ret = -TARGET_ENOSYS;
4320#ifdef __NR_msgrcv
89f9fe44 4321 ret = get_errno(safe_msgrcv(msqid, host_mb, msgsz, msgtyp, msgflg));
524fa340
LV
4322#endif
4323#ifdef __NR_ipc
4324 if (ret == -TARGET_ENOSYS) {
4325 ret = get_errno(safe_ipc(IPCOP_CALL(1, IPCOP_msgrcv), msqid, msgsz,
d8c08b1e 4326 msgflg, MSGRCV_ARGS(host_mb, msgtyp)));
524fa340
LV
4327 }
4328#endif
1c54ff97 4329
579a97f7
FB
4330 if (ret > 0) {
4331 abi_ulong target_mtext_addr = msgp + sizeof(abi_ulong);
4332 target_mtext = lock_user(VERIFY_WRITE, target_mtext_addr, ret, 0);
4333 if (!target_mtext) {
4334 ret = -TARGET_EFAULT;
4335 goto end;
4336 }
1c54ff97 4337 memcpy(target_mb->mtext, host_mb->mtext, ret);
579a97f7
FB
4338 unlock_user(target_mtext, target_mtext_addr, ret);
4339 }
1c54ff97 4340
cbb21eed 4341 target_mb->mtype = tswapal(host_mb->mtype);
1bc012f6 4342
579a97f7
FB
4343end:
4344 if (target_mb)
4345 unlock_user_struct(target_mb, msgp, 1);
0d07fe47 4346 g_free(host_mb);
1bc012f6
TS
4347 return ret;
4348}
4349
88a8c984
RV
4350static inline abi_long target_to_host_shmid_ds(struct shmid_ds *host_sd,
4351 abi_ulong target_addr)
4352{
4353 struct target_shmid_ds *target_sd;
4354
4355 if (!lock_user_struct(VERIFY_READ, target_sd, target_addr, 1))
4356 return -TARGET_EFAULT;
4357 if (target_to_host_ipc_perm(&(host_sd->shm_perm), target_addr))
4358 return -TARGET_EFAULT;
4359 __get_user(host_sd->shm_segsz, &target_sd->shm_segsz);
4360 __get_user(host_sd->shm_atime, &target_sd->shm_atime);
4361 __get_user(host_sd->shm_dtime, &target_sd->shm_dtime);
4362 __get_user(host_sd->shm_ctime, &target_sd->shm_ctime);
4363 __get_user(host_sd->shm_cpid, &target_sd->shm_cpid);
4364 __get_user(host_sd->shm_lpid, &target_sd->shm_lpid);
4365 __get_user(host_sd->shm_nattch, &target_sd->shm_nattch);
4366 unlock_user_struct(target_sd, target_addr, 0);
4367 return 0;
4368}
4369
4370static inline abi_long host_to_target_shmid_ds(abi_ulong target_addr,
4371 struct shmid_ds *host_sd)
4372{
4373 struct target_shmid_ds *target_sd;
4374
4375 if (!lock_user_struct(VERIFY_WRITE, target_sd, target_addr, 0))
4376 return -TARGET_EFAULT;
4377 if (host_to_target_ipc_perm(target_addr, &(host_sd->shm_perm)))
4378 return -TARGET_EFAULT;
4379 __put_user(host_sd->shm_segsz, &target_sd->shm_segsz);
4380 __put_user(host_sd->shm_atime, &target_sd->shm_atime);
4381 __put_user(host_sd->shm_dtime, &target_sd->shm_dtime);
4382 __put_user(host_sd->shm_ctime, &target_sd->shm_ctime);
4383 __put_user(host_sd->shm_cpid, &target_sd->shm_cpid);
4384 __put_user(host_sd->shm_lpid, &target_sd->shm_lpid);
4385 __put_user(host_sd->shm_nattch, &target_sd->shm_nattch);
4386 unlock_user_struct(target_sd, target_addr, 1);
4387 return 0;
4388}
4389
4390struct target_shminfo {
4391 abi_ulong shmmax;
4392 abi_ulong shmmin;
4393 abi_ulong shmmni;
4394 abi_ulong shmseg;
4395 abi_ulong shmall;
4396};
4397
4398static inline abi_long host_to_target_shminfo(abi_ulong target_addr,
4399 struct shminfo *host_shminfo)
4400{
4401 struct target_shminfo *target_shminfo;
4402 if (!lock_user_struct(VERIFY_WRITE, target_shminfo, target_addr, 0))
4403 return -TARGET_EFAULT;
4404 __put_user(host_shminfo->shmmax, &target_shminfo->shmmax);
4405 __put_user(host_shminfo->shmmin, &target_shminfo->shmmin);
4406 __put_user(host_shminfo->shmmni, &target_shminfo->shmmni);
4407 __put_user(host_shminfo->shmseg, &target_shminfo->shmseg);
4408 __put_user(host_shminfo->shmall, &target_shminfo->shmall);
4409 unlock_user_struct(target_shminfo, target_addr, 1);
4410 return 0;
4411}
4412
4413struct target_shm_info {
4414 int used_ids;
4415 abi_ulong shm_tot;
4416 abi_ulong shm_rss;
4417 abi_ulong shm_swp;
4418 abi_ulong swap_attempts;
4419 abi_ulong swap_successes;
4420};
4421
4422static inline abi_long host_to_target_shm_info(abi_ulong target_addr,
4423 struct shm_info *host_shm_info)
4424{
4425 struct target_shm_info *target_shm_info;
4426 if (!lock_user_struct(VERIFY_WRITE, target_shm_info, target_addr, 0))
4427 return -TARGET_EFAULT;
4428 __put_user(host_shm_info->used_ids, &target_shm_info->used_ids);
4429 __put_user(host_shm_info->shm_tot, &target_shm_info->shm_tot);
4430 __put_user(host_shm_info->shm_rss, &target_shm_info->shm_rss);
4431 __put_user(host_shm_info->shm_swp, &target_shm_info->shm_swp);
4432 __put_user(host_shm_info->swap_attempts, &target_shm_info->swap_attempts);
4433 __put_user(host_shm_info->swap_successes, &target_shm_info->swap_successes);
4434 unlock_user_struct(target_shm_info, target_addr, 1);
4435 return 0;
4436}
4437
4438static inline abi_long do_shmctl(int shmid, int cmd, abi_long buf)
4439{
4440 struct shmid_ds dsarg;
4441 struct shminfo shminfo;
4442 struct shm_info shm_info;
4443 abi_long ret = -TARGET_EINVAL;
4444
4445 cmd &= 0xff;
4446
4447 switch(cmd) {
4448 case IPC_STAT:
4449 case IPC_SET:
4450 case SHM_STAT:
4451 if (target_to_host_shmid_ds(&dsarg, buf))
4452 return -TARGET_EFAULT;
4453 ret = get_errno(shmctl(shmid, cmd, &dsarg));
4454 if (host_to_target_shmid_ds(buf, &dsarg))
4455 return -TARGET_EFAULT;
4456 break;
4457 case IPC_INFO:
4458 ret = get_errno(shmctl(shmid, cmd, (struct shmid_ds *)&shminfo));
4459 if (host_to_target_shminfo(buf, &shminfo))
4460 return -TARGET_EFAULT;
4461 break;
4462 case SHM_INFO:
4463 ret = get_errno(shmctl(shmid, cmd, (struct shmid_ds *)&shm_info));
4464 if (host_to_target_shm_info(buf, &shm_info))
4465 return -TARGET_EFAULT;
4466 break;
4467 case IPC_RMID:
4468 case SHM_LOCK:
4469 case SHM_UNLOCK:
4470 ret = get_errno(shmctl(shmid, cmd, NULL));
4471 break;
4472 }
4473
4474 return ret;
4475}
4476
1c54ff97 4477#ifdef TARGET_NR_ipc
53a5960a 4478/* ??? This only works with linear mappings. */
0da46a6e 4479/* do_ipc() must return target values and target errnos. */
ee8e7614
PM
4480static abi_long do_ipc(CPUArchState *cpu_env,
4481 unsigned int call, abi_long first,
37ed0956 4482 abi_long second, abi_long third,
992f48a0 4483 abi_long ptr, abi_long fifth)
8853f86e
FB
4484{
4485 int version;
992f48a0 4486 abi_long ret = 0;
8853f86e
FB
4487
4488 version = call >> 16;
4489 call &= 0xffff;
4490
4491 switch (call) {
fa294816 4492 case IPCOP_semop:
cac46eb0 4493 ret = do_semtimedop(first, ptr, second, 0, false);
d8c08b1e
MK
4494 break;
4495 case IPCOP_semtimedop:
4496 /*
4497 * The s390 sys_ipc variant has only five parameters instead of six
4498 * (as for default variant) and the only difference is the handling of
4499 * SEMTIMEDOP where on s390 the third parameter is used as a pointer
4500 * to a struct timespec where the generic variant uses fifth parameter.
4501 */
4502#if defined(TARGET_S390X)
cac46eb0 4503 ret = do_semtimedop(first, ptr, second, third, TARGET_ABI_BITS == 64);
d8c08b1e 4504#else
cac46eb0 4505 ret = do_semtimedop(first, ptr, second, fifth, TARGET_ABI_BITS == 64);
d8c08b1e 4506#endif
fa294816
TS
4507 break;
4508
4509 case IPCOP_semget:
4510 ret = get_errno(semget(first, second, third));
4511 break;
4512
5d2fa8eb
TM
4513 case IPCOP_semctl: {
4514 /* The semun argument to semctl is passed by value, so dereference the
4515 * ptr argument. */
4516 abi_ulong atptr;
37ed0956 4517 get_user_ual(atptr, ptr);
d1c002b6 4518 ret = do_semctl(first, second, third, atptr);
fa294816 4519 break;
5d2fa8eb 4520 }
d96372ef 4521
1c54ff97
AJ
4522 case IPCOP_msgget:
4523 ret = get_errno(msgget(first, second));
4524 break;
d96372ef 4525
1c54ff97
AJ
4526 case IPCOP_msgsnd:
4527 ret = do_msgsnd(first, ptr, second, third);
4528 break;
d96372ef 4529
1c54ff97
AJ
4530 case IPCOP_msgctl:
4531 ret = do_msgctl(first, second, ptr);
4532 break;
d96372ef 4533
1c54ff97
AJ
4534 case IPCOP_msgrcv:
4535 switch (version) {
4536 case 0:
4537 {
4538 struct target_ipc_kludge {
4539 abi_long msgp;
4540 abi_long msgtyp;
4541 } *tmp;
4542
4543 if (!lock_user_struct(VERIFY_READ, tmp, ptr, 1)) {
4544 ret = -TARGET_EFAULT;
4545 break;
4546 }
d96372ef 4547
79dd77de 4548 ret = do_msgrcv(first, tswapal(tmp->msgp), second, tswapal(tmp->msgtyp), third);
d96372ef 4549
1c54ff97
AJ
4550 unlock_user_struct(tmp, ptr, 0);
4551 break;
4552 }
4553 default:
4554 ret = do_msgrcv(first, ptr, second, fifth, third);
4555 }
4556 break;
d96372ef 4557
8853f86e 4558 case IPCOP_shmat:
88a8c984
RV
4559 switch (version) {
4560 default:
5a4a898d
FB
4561 {
4562 abi_ulong raddr;
225a206c 4563 raddr = target_shmat(cpu_env, first, ptr, second);
88a8c984
RV
4564 if (is_error(raddr))
4565 return get_errno(raddr);
2f619698 4566 if (put_user_ual(raddr, third))
5a4a898d 4567 return -TARGET_EFAULT;
88a8c984
RV
4568 break;
4569 }
4570 case 1:
4571 ret = -TARGET_EINVAL;
4572 break;
5a4a898d 4573 }
8853f86e
FB
4574 break;
4575 case IPCOP_shmdt:
225a206c 4576 ret = target_shmdt(ptr);
8853f86e
FB
4577 break;
4578
4579 case IPCOP_shmget:
4580 /* IPC_* flag values are the same on all linux platforms */
4581 ret = get_errno(shmget(first, second, third));
4582 break;
4583
4584 /* IPC_* and SHM_* command values are the same on all linux platforms */
4585 case IPCOP_shmctl:
a2926784 4586 ret = do_shmctl(first, second, ptr);
8853f86e
FB
4587 break;
4588 default:
39be5350
JK
4589 qemu_log_mask(LOG_UNIMP, "Unsupported ipc call: %d (version %d)\n",
4590 call, version);
0da46a6e 4591 ret = -TARGET_ENOSYS;
8853f86e
FB
4592 break;
4593 }
4594 return ret;
4595}
32407103 4596#endif
8853f86e 4597
31e31b8a 4598/* kernel structure types definitions */
31e31b8a 4599
001faf32 4600#define STRUCT(name, ...) STRUCT_ ## name,
31e31b8a
FB
4601#define STRUCT_SPECIAL(name) STRUCT_ ## name,
4602enum {
4603#include "syscall_types.h"
8be656b8 4604STRUCT_MAX
31e31b8a
FB
4605};
4606#undef STRUCT
4607#undef STRUCT_SPECIAL
4608
001faf32 4609#define STRUCT(name, ...) static const argtype struct_ ## name ## _def[] = { __VA_ARGS__, TYPE_NULL };
31e31b8a
FB
4610#define STRUCT_SPECIAL(name)
4611#include "syscall_types.h"
4612#undef STRUCT
4613#undef STRUCT_SPECIAL
4614
31e31b8a
FB
4615#define MAX_STRUCT_SIZE 4096
4616
dace20dc 4617#ifdef CONFIG_FIEMAP
285da2b9
PM
4618/* So fiemap access checks don't overflow on 32 bit systems.
4619 * This is very slightly smaller than the limit imposed by
4620 * the underlying kernel.
4621 */
4622#define FIEMAP_MAX_EXTENTS ((UINT_MAX - sizeof(struct fiemap)) \
4623 / sizeof(struct fiemap_extent))
4624
4625static abi_long do_ioctl_fs_ioc_fiemap(const IOCTLEntry *ie, uint8_t *buf_temp,
45c874eb 4626 int fd, int cmd, abi_long arg)
285da2b9
PM
4627{
4628 /* The parameter for this ioctl is a struct fiemap followed
4629 * by an array of struct fiemap_extent whose size is set
4630 * in fiemap->fm_extent_count. The array is filled in by the
4631 * ioctl.
4632 */
4633 int target_size_in, target_size_out;
4634 struct fiemap *fm;
4635 const argtype *arg_type = ie->arg_type;
4636 const argtype extent_arg_type[] = { MK_STRUCT(STRUCT_fiemap_extent) };
4637 void *argptr, *p;
4638 abi_long ret;
4639 int i, extent_size = thunk_type_size(extent_arg_type, 0);
4640 uint32_t outbufsz;
4641 int free_fm = 0;
4642
4643 assert(arg_type[0] == TYPE_PTR);
4644 assert(ie->access == IOC_RW);
4645 arg_type++;
4646 target_size_in = thunk_type_size(arg_type, 0);
4647 argptr = lock_user(VERIFY_READ, arg, target_size_in, 1);
4648 if (!argptr) {
4649 return -TARGET_EFAULT;
4650 }
4651 thunk_convert(buf_temp, argptr, arg_type, THUNK_HOST);
4652 unlock_user(argptr, arg, 0);
4653 fm = (struct fiemap *)buf_temp;
4654 if (fm->fm_extent_count > FIEMAP_MAX_EXTENTS) {
4655 return -TARGET_EINVAL;
4656 }
4657
4658 outbufsz = sizeof (*fm) +
4659 (sizeof(struct fiemap_extent) * fm->fm_extent_count);
4660
4661 if (outbufsz > MAX_STRUCT_SIZE) {
4662 /* We can't fit all the extents into the fixed size buffer.
4663 * Allocate one that is large enough and use it instead.
4664 */
0e173b24 4665 fm = g_try_malloc(outbufsz);
285da2b9
PM
4666 if (!fm) {
4667 return -TARGET_ENOMEM;
4668 }
4669 memcpy(fm, buf_temp, sizeof(struct fiemap));
4670 free_fm = 1;
4671 }
49ca6f3e 4672 ret = get_errno(safe_ioctl(fd, ie->host_cmd, fm));
285da2b9
PM
4673 if (!is_error(ret)) {
4674 target_size_out = target_size_in;
4675 /* An extent_count of 0 means we were only counting the extents
4676 * so there are no structs to copy
4677 */
4678 if (fm->fm_extent_count != 0) {
4679 target_size_out += fm->fm_mapped_extents * extent_size;
4680 }
4681 argptr = lock_user(VERIFY_WRITE, arg, target_size_out, 0);
4682 if (!argptr) {
4683 ret = -TARGET_EFAULT;
4684 } else {
4685 /* Convert the struct fiemap */
4686 thunk_convert(argptr, fm, arg_type, THUNK_TARGET);
4687 if (fm->fm_extent_count != 0) {
4688 p = argptr + target_size_in;
4689 /* ...and then all the struct fiemap_extents */
4690 for (i = 0; i < fm->fm_mapped_extents; i++) {
4691 thunk_convert(p, &fm->fm_extents[i], extent_arg_type,
4692 THUNK_TARGET);
4693 p += extent_size;
4694 }
4695 }
4696 unlock_user(argptr, arg, target_size_out);
4697 }
4698 }
4699 if (free_fm) {
0e173b24 4700 g_free(fm);
285da2b9
PM
4701 }
4702 return ret;
4703}
dace20dc 4704#endif
285da2b9 4705
059c2f2c 4706static abi_long do_ioctl_ifconf(const IOCTLEntry *ie, uint8_t *buf_temp,
45c874eb 4707 int fd, int cmd, abi_long arg)
059c2f2c
LV
4708{
4709 const argtype *arg_type = ie->arg_type;
4710 int target_size;
4711 void *argptr;
4712 int ret;
4713 struct ifconf *host_ifconf;
4714 uint32_t outbufsz;
4715 const argtype ifreq_arg_type[] = { MK_STRUCT(STRUCT_sockaddr_ifreq) };
4df7b7fa 4716 const argtype ifreq_max_type[] = { MK_STRUCT(STRUCT_ifmap_ifreq) };
059c2f2c
LV
4717 int target_ifreq_size;
4718 int nb_ifreq;
4719 int free_buf = 0;
4720 int i;
4721 int target_ifc_len;
4722 abi_long target_ifc_buf;
4723 int host_ifc_len;
4724 char *host_ifc_buf;
4725
4726 assert(arg_type[0] == TYPE_PTR);
4727 assert(ie->access == IOC_RW);
4728
4729 arg_type++;
4730 target_size = thunk_type_size(arg_type, 0);
4731
4732 argptr = lock_user(VERIFY_READ, arg, target_size, 1);
4733 if (!argptr)
4734 return -TARGET_EFAULT;
4735 thunk_convert(buf_temp, argptr, arg_type, THUNK_HOST);
4736 unlock_user(argptr, arg, 0);
4737
4738 host_ifconf = (struct ifconf *)(unsigned long)buf_temp;
059c2f2c 4739 target_ifc_buf = (abi_long)(unsigned long)host_ifconf->ifc_buf;
4df7b7fa 4740 target_ifreq_size = thunk_type_size(ifreq_max_type, 0);
059c2f2c 4741
22e4a267
KL
4742 if (target_ifc_buf != 0) {
4743 target_ifc_len = host_ifconf->ifc_len;
4744 nb_ifreq = target_ifc_len / target_ifreq_size;
4745 host_ifc_len = nb_ifreq * sizeof(struct ifreq);
4746
4747 outbufsz = sizeof(*host_ifconf) + host_ifc_len;
4748 if (outbufsz > MAX_STRUCT_SIZE) {
4749 /*
4750 * We can't fit all the extents into the fixed size buffer.
4751 * Allocate one that is large enough and use it instead.
4752 */
7a5626a1 4753 host_ifconf = g_try_malloc(outbufsz);
22e4a267
KL
4754 if (!host_ifconf) {
4755 return -TARGET_ENOMEM;
4756 }
4757 memcpy(host_ifconf, buf_temp, sizeof(*host_ifconf));
4758 free_buf = 1;
059c2f2c 4759 }
22e4a267 4760 host_ifc_buf = (char *)host_ifconf + sizeof(*host_ifconf);
059c2f2c 4761
22e4a267
KL
4762 host_ifconf->ifc_len = host_ifc_len;
4763 } else {
4764 host_ifc_buf = NULL;
4765 }
059c2f2c
LV
4766 host_ifconf->ifc_buf = host_ifc_buf;
4767
49ca6f3e 4768 ret = get_errno(safe_ioctl(fd, ie->host_cmd, host_ifconf));
059c2f2c
LV
4769 if (!is_error(ret)) {
4770 /* convert host ifc_len to target ifc_len */
4771
4772 nb_ifreq = host_ifconf->ifc_len / sizeof(struct ifreq);
4773 target_ifc_len = nb_ifreq * target_ifreq_size;
4774 host_ifconf->ifc_len = target_ifc_len;
4775
4776 /* restore target ifc_buf */
4777
4778 host_ifconf->ifc_buf = (char *)(unsigned long)target_ifc_buf;
4779
4780 /* copy struct ifconf to target user */
4781
4782 argptr = lock_user(VERIFY_WRITE, arg, target_size, 0);
4783 if (!argptr)
4784 return -TARGET_EFAULT;
4785 thunk_convert(argptr, host_ifconf, arg_type, THUNK_TARGET);
4786 unlock_user(argptr, arg, target_size);
4787
22e4a267
KL
4788 if (target_ifc_buf != 0) {
4789 /* copy ifreq[] to target user */
4790 argptr = lock_user(VERIFY_WRITE, target_ifc_buf, target_ifc_len, 0);
4791 for (i = 0; i < nb_ifreq ; i++) {
4792 thunk_convert(argptr + i * target_ifreq_size,
4793 host_ifc_buf + i * sizeof(struct ifreq),
4794 ifreq_arg_type, THUNK_TARGET);
4795 }
4796 unlock_user(argptr, target_ifc_buf, target_ifc_len);
059c2f2c 4797 }
059c2f2c
LV
4798 }
4799
4800 if (free_buf) {
7a5626a1 4801 g_free(host_ifconf);
059c2f2c
LV
4802 }
4803
4804 return ret;
4805}
4806
a133367e
CT
4807#if defined(CONFIG_USBFS)
4808#if HOST_LONG_BITS > 64
4809#error USBDEVFS thunks do not support >64 bit hosts yet.
4810#endif
4811struct live_urb {
4812 uint64_t target_urb_adr;
4813 uint64_t target_buf_adr;
4814 char *target_buf_ptr;
4815 struct usbdevfs_urb host_urb;
4816};
4817
4818static GHashTable *usbdevfs_urb_hashtable(void)
4819{
4820 static GHashTable *urb_hashtable;
4821
4822 if (!urb_hashtable) {
4823 urb_hashtable = g_hash_table_new(g_int64_hash, g_int64_equal);
4824 }
4825 return urb_hashtable;
4826}
4827
4828static void urb_hashtable_insert(struct live_urb *urb)
4829{
4830 GHashTable *urb_hashtable = usbdevfs_urb_hashtable();
4831 g_hash_table_insert(urb_hashtable, urb, urb);
4832}
4833
4834static struct live_urb *urb_hashtable_lookup(uint64_t target_urb_adr)
4835{
4836 GHashTable *urb_hashtable = usbdevfs_urb_hashtable();
4837 return g_hash_table_lookup(urb_hashtable, &target_urb_adr);
4838}
4839
4840static void urb_hashtable_remove(struct live_urb *urb)
4841{
4842 GHashTable *urb_hashtable = usbdevfs_urb_hashtable();
4843 g_hash_table_remove(urb_hashtable, urb);
4844}
4845
4846static abi_long
4847do_ioctl_usbdevfs_reapurb(const IOCTLEntry *ie, uint8_t *buf_temp,
4848 int fd, int cmd, abi_long arg)
4849{
4850 const argtype usbfsurb_arg_type[] = { MK_STRUCT(STRUCT_usbdevfs_urb) };
4851 const argtype ptrvoid_arg_type[] = { TYPE_PTRVOID, 0, 0 };
4852 struct live_urb *lurb;
4853 void *argptr;
4854 uint64_t hurb;
4855 int target_size;
4856 uintptr_t target_urb_adr;
4857 abi_long ret;
4858
4859 target_size = thunk_type_size(usbfsurb_arg_type, THUNK_TARGET);
4860
4861 memset(buf_temp, 0, sizeof(uint64_t));
4862 ret = get_errno(safe_ioctl(fd, ie->host_cmd, buf_temp));
4863 if (is_error(ret)) {
4864 return ret;
4865 }
4866
4867 memcpy(&hurb, buf_temp, sizeof(uint64_t));
4868 lurb = (void *)((uintptr_t)hurb - offsetof(struct live_urb, host_urb));
4869 if (!lurb->target_urb_adr) {
4870 return -TARGET_EFAULT;
4871 }
4872 urb_hashtable_remove(lurb);
4873 unlock_user(lurb->target_buf_ptr, lurb->target_buf_adr,
4874 lurb->host_urb.buffer_length);
4875 lurb->target_buf_ptr = NULL;
4876
4877 /* restore the guest buffer pointer */
4878 lurb->host_urb.buffer = (void *)(uintptr_t)lurb->target_buf_adr;
4879
4880 /* update the guest urb struct */
4881 argptr = lock_user(VERIFY_WRITE, lurb->target_urb_adr, target_size, 0);
4882 if (!argptr) {
4883 g_free(lurb);
4884 return -TARGET_EFAULT;
4885 }
4886 thunk_convert(argptr, &lurb->host_urb, usbfsurb_arg_type, THUNK_TARGET);
4887 unlock_user(argptr, lurb->target_urb_adr, target_size);
4888
4889 target_size = thunk_type_size(ptrvoid_arg_type, THUNK_TARGET);
4890 /* write back the urb handle */
4891 argptr = lock_user(VERIFY_WRITE, arg, target_size, 0);
4892 if (!argptr) {
4893 g_free(lurb);
4894 return -TARGET_EFAULT;
4895 }
4896
4897 /* GHashTable uses 64-bit keys but thunk_convert expects uintptr_t */
4898 target_urb_adr = lurb->target_urb_adr;
4899 thunk_convert(argptr, &target_urb_adr, ptrvoid_arg_type, THUNK_TARGET);
4900 unlock_user(argptr, arg, target_size);
4901
4902 g_free(lurb);
4903 return ret;
4904}
4905
4906static abi_long
4907do_ioctl_usbdevfs_discardurb(const IOCTLEntry *ie,
4908 uint8_t *buf_temp __attribute__((unused)),
4909 int fd, int cmd, abi_long arg)
4910{
4911 struct live_urb *lurb;
4912
4913 /* map target address back to host URB with metadata. */
4914 lurb = urb_hashtable_lookup(arg);
4915 if (!lurb) {
4916 return -TARGET_EFAULT;
4917 }
4918 return get_errno(safe_ioctl(fd, ie->host_cmd, &lurb->host_urb));
4919}
4920
4921static abi_long
4922do_ioctl_usbdevfs_submiturb(const IOCTLEntry *ie, uint8_t *buf_temp,
4923 int fd, int cmd, abi_long arg)
4924{
4925 const argtype *arg_type = ie->arg_type;
4926 int target_size;
4927 abi_long ret;
4928 void *argptr;
4929 int rw_dir;
4930 struct live_urb *lurb;
4931
4932 /*
4933 * each submitted URB needs to map to a unique ID for the
4934 * kernel, and that unique ID needs to be a pointer to
4935 * host memory. hence, we need to malloc for each URB.
4936 * isochronous transfers have a variable length struct.
4937 */
4938 arg_type++;
4939 target_size = thunk_type_size(arg_type, THUNK_TARGET);
4940
4941 /* construct host copy of urb and metadata */
b21e2380 4942 lurb = g_try_new0(struct live_urb, 1);
a133367e
CT
4943 if (!lurb) {
4944 return -TARGET_ENOMEM;
4945 }
4946
4947 argptr = lock_user(VERIFY_READ, arg, target_size, 1);
4948 if (!argptr) {
4949 g_free(lurb);
4950 return -TARGET_EFAULT;
4951 }
4952 thunk_convert(&lurb->host_urb, argptr, arg_type, THUNK_HOST);
4953 unlock_user(argptr, arg, 0);
4954
4955 lurb->target_urb_adr = arg;
4956 lurb->target_buf_adr = (uintptr_t)lurb->host_urb.buffer;
4957
4958 /* buffer space used depends on endpoint type so lock the entire buffer */
4959 /* control type urbs should check the buffer contents for true direction */
4960 rw_dir = lurb->host_urb.endpoint & USB_DIR_IN ? VERIFY_WRITE : VERIFY_READ;
4961 lurb->target_buf_ptr = lock_user(rw_dir, lurb->target_buf_adr,
4962 lurb->host_urb.buffer_length, 1);
4963 if (lurb->target_buf_ptr == NULL) {
4964 g_free(lurb);
4965 return -TARGET_EFAULT;
4966 }
4967
4968 /* update buffer pointer in host copy */
4969 lurb->host_urb.buffer = lurb->target_buf_ptr;
4970
4971 ret = get_errno(safe_ioctl(fd, ie->host_cmd, &lurb->host_urb));
4972 if (is_error(ret)) {
4973 unlock_user(lurb->target_buf_ptr, lurb->target_buf_adr, 0);
4974 g_free(lurb);
4975 } else {
4976 urb_hashtable_insert(lurb);
4977 }
4978
4979 return ret;
4980}
4981#endif /* CONFIG_USBFS */
4982
56e904ec 4983static abi_long do_ioctl_dm(const IOCTLEntry *ie, uint8_t *buf_temp, int fd,
45c874eb 4984 int cmd, abi_long arg)
56e904ec
AG
4985{
4986 void *argptr;
4987 struct dm_ioctl *host_dm;
4988 abi_long guest_data;
4989 uint32_t guest_data_size;
4990 int target_size;
4991 const argtype *arg_type = ie->arg_type;
4992 abi_long ret;
4993 void *big_buf = NULL;
4994 char *host_data;
4995
4996 arg_type++;
4997 target_size = thunk_type_size(arg_type, 0);
4998 argptr = lock_user(VERIFY_READ, arg, target_size, 1);
4999 if (!argptr) {
5000 ret = -TARGET_EFAULT;
5001 goto out;
5002 }
5003 thunk_convert(buf_temp, argptr, arg_type, THUNK_HOST);
5004 unlock_user(argptr, arg, 0);
5005
5006 /* buf_temp is too small, so fetch things into a bigger buffer */
5007 big_buf = g_malloc0(((struct dm_ioctl*)buf_temp)->data_size * 2);
5008 memcpy(big_buf, buf_temp, target_size);
5009 buf_temp = big_buf;
5010 host_dm = big_buf;
5011
5012 guest_data = arg + host_dm->data_start;
5013 if ((guest_data - arg) < 0) {
f9757b1d 5014 ret = -TARGET_EINVAL;
56e904ec
AG
5015 goto out;
5016 }
5017 guest_data_size = host_dm->data_size - host_dm->data_start;
5018 host_data = (char*)host_dm + host_dm->data_start;
5019
5020 argptr = lock_user(VERIFY_READ, guest_data, guest_data_size, 1);
3211215e
PM
5021 if (!argptr) {
5022 ret = -TARGET_EFAULT;
5023 goto out;
5024 }
5025
56e904ec
AG
5026 switch (ie->host_cmd) {
5027 case DM_REMOVE_ALL:
5028 case DM_LIST_DEVICES:
5029 case DM_DEV_CREATE:
5030 case DM_DEV_REMOVE:
5031 case DM_DEV_SUSPEND:
5032 case DM_DEV_STATUS:
5033 case DM_DEV_WAIT:
5034 case DM_TABLE_STATUS:
5035 case DM_TABLE_CLEAR:
5036 case DM_TABLE_DEPS:
5037 case DM_LIST_VERSIONS:
5038 /* no input data */
5039 break;
5040 case DM_DEV_RENAME:
5041 case DM_DEV_SET_GEOMETRY:
5042 /* data contains only strings */
5043 memcpy(host_data, argptr, guest_data_size);
5044 break;
5045 case DM_TARGET_MSG:
5046 memcpy(host_data, argptr, guest_data_size);
5047 *(uint64_t*)host_data = tswap64(*(uint64_t*)argptr);
5048 break;
5049 case DM_TABLE_LOAD:
5050 {
5051 void *gspec = argptr;
5052 void *cur_data = host_data;
eb2929ca
LV
5053 const argtype dm_arg_type[] = { MK_STRUCT(STRUCT_dm_target_spec) };
5054 int spec_size = thunk_type_size(dm_arg_type, 0);
56e904ec
AG
5055 int i;
5056
5057 for (i = 0; i < host_dm->target_count; i++) {
5058 struct dm_target_spec *spec = cur_data;
5059 uint32_t next;
5060 int slen;
5061
eb2929ca 5062 thunk_convert(spec, gspec, dm_arg_type, THUNK_HOST);
56e904ec
AG
5063 slen = strlen((char*)gspec + spec_size) + 1;
5064 next = spec->next;
5065 spec->next = sizeof(*spec) + slen;
5066 strcpy((char*)&spec[1], gspec + spec_size);
5067 gspec += next;
5068 cur_data += spec->next;
5069 }
5070 break;
5071 }
5072 default:
5073 ret = -TARGET_EINVAL;
dec0473d 5074 unlock_user(argptr, guest_data, 0);
56e904ec
AG
5075 goto out;
5076 }
5077 unlock_user(argptr, guest_data, 0);
5078
49ca6f3e 5079 ret = get_errno(safe_ioctl(fd, ie->host_cmd, buf_temp));
56e904ec
AG
5080 if (!is_error(ret)) {
5081 guest_data = arg + host_dm->data_start;
5082 guest_data_size = host_dm->data_size - host_dm->data_start;
5083 argptr = lock_user(VERIFY_WRITE, guest_data, guest_data_size, 0);
5084 switch (ie->host_cmd) {
5085 case DM_REMOVE_ALL:
5086 case DM_DEV_CREATE:
5087 case DM_DEV_REMOVE:
5088 case DM_DEV_RENAME:
5089 case DM_DEV_SUSPEND:
5090 case DM_DEV_STATUS:
5091 case DM_TABLE_LOAD:
5092 case DM_TABLE_CLEAR:
5093 case DM_TARGET_MSG:
5094 case DM_DEV_SET_GEOMETRY:
5095 /* no return data */
5096 break;
5097 case DM_LIST_DEVICES:
5098 {
5099 struct dm_name_list *nl = (void*)host_dm + host_dm->data_start;
5100 uint32_t remaining_data = guest_data_size;
5101 void *cur_data = argptr;
eb2929ca 5102 const argtype dm_arg_type[] = { MK_STRUCT(STRUCT_dm_name_list) };
56e904ec
AG
5103 int nl_size = 12; /* can't use thunk_size due to alignment */
5104
5105 while (1) {
5106 uint32_t next = nl->next;
5107 if (next) {
5108 nl->next = nl_size + (strlen(nl->name) + 1);
5109 }
5110 if (remaining_data < nl->next) {
5111 host_dm->flags |= DM_BUFFER_FULL_FLAG;
5112 break;
5113 }
eb2929ca 5114 thunk_convert(cur_data, nl, dm_arg_type, THUNK_TARGET);
56e904ec
AG
5115 strcpy(cur_data + nl_size, nl->name);
5116 cur_data += nl->next;
5117 remaining_data -= nl->next;
5118 if (!next) {
5119 break;
5120 }
5121 nl = (void*)nl + next;
5122 }
5123 break;
5124 }
5125 case DM_DEV_WAIT:
5126 case DM_TABLE_STATUS:
5127 {
5128 struct dm_target_spec *spec = (void*)host_dm + host_dm->data_start;
5129 void *cur_data = argptr;
eb2929ca
LV
5130 const argtype dm_arg_type[] = { MK_STRUCT(STRUCT_dm_target_spec) };
5131 int spec_size = thunk_type_size(dm_arg_type, 0);
56e904ec
AG
5132 int i;
5133
5134 for (i = 0; i < host_dm->target_count; i++) {
5135 uint32_t next = spec->next;
5136 int slen = strlen((char*)&spec[1]) + 1;
5137 spec->next = (cur_data - argptr) + spec_size + slen;
5138 if (guest_data_size < spec->next) {
5139 host_dm->flags |= DM_BUFFER_FULL_FLAG;
5140 break;
5141 }
eb2929ca 5142 thunk_convert(cur_data, spec, dm_arg_type, THUNK_TARGET);
56e904ec
AG
5143 strcpy(cur_data + spec_size, (char*)&spec[1]);
5144 cur_data = argptr + spec->next;
5145 spec = (void*)host_dm + host_dm->data_start + next;
5146 }
5147 break;
5148 }
5149 case DM_TABLE_DEPS:
5150 {
5151 void *hdata = (void*)host_dm + host_dm->data_start;
5152 int count = *(uint32_t*)hdata;
5153 uint64_t *hdev = hdata + 8;
5154 uint64_t *gdev = argptr + 8;
5155 int i;
5156
5157 *(uint32_t*)argptr = tswap32(count);
5158 for (i = 0; i < count; i++) {
5159 *gdev = tswap64(*hdev);
5160 gdev++;
5161 hdev++;
5162 }
5163 break;
5164 }
5165 case DM_LIST_VERSIONS:
5166 {
5167 struct dm_target_versions *vers = (void*)host_dm + host_dm->data_start;
5168 uint32_t remaining_data = guest_data_size;
5169 void *cur_data = argptr;
eb2929ca
LV
5170 const argtype dm_arg_type[] = { MK_STRUCT(STRUCT_dm_target_versions) };
5171 int vers_size = thunk_type_size(dm_arg_type, 0);
56e904ec
AG
5172
5173 while (1) {
5174 uint32_t next = vers->next;
5175 if (next) {
5176 vers->next = vers_size + (strlen(vers->name) + 1);
5177 }
5178 if (remaining_data < vers->next) {
5179 host_dm->flags |= DM_BUFFER_FULL_FLAG;
5180 break;
5181 }
eb2929ca 5182 thunk_convert(cur_data, vers, dm_arg_type, THUNK_TARGET);
56e904ec
AG
5183 strcpy(cur_data + vers_size, vers->name);
5184 cur_data += vers->next;
5185 remaining_data -= vers->next;
5186 if (!next) {
5187 break;
5188 }
5189 vers = (void*)vers + next;
5190 }
5191 break;
5192 }
5193 default:
dec0473d 5194 unlock_user(argptr, guest_data, 0);
56e904ec
AG
5195 ret = -TARGET_EINVAL;
5196 goto out;
5197 }
5198 unlock_user(argptr, guest_data, guest_data_size);
5199
5200 argptr = lock_user(VERIFY_WRITE, arg, target_size, 0);
5201 if (!argptr) {
5202 ret = -TARGET_EFAULT;
5203 goto out;
5204 }
5205 thunk_convert(argptr, buf_temp, arg_type, THUNK_TARGET);
5206 unlock_user(argptr, arg, target_size);
5207 }
5208out:
ad11ad77 5209 g_free(big_buf);
56e904ec
AG
5210 return ret;
5211}
5212
a59b5e35 5213static abi_long do_ioctl_blkpg(const IOCTLEntry *ie, uint8_t *buf_temp, int fd,
45c874eb 5214 int cmd, abi_long arg)
a59b5e35
AG
5215{
5216 void *argptr;
5217 int target_size;
5218 const argtype *arg_type = ie->arg_type;
5219 const argtype part_arg_type[] = { MK_STRUCT(STRUCT_blkpg_partition) };
5220 abi_long ret;
5221
5222 struct blkpg_ioctl_arg *host_blkpg = (void*)buf_temp;
5223 struct blkpg_partition host_part;
5224
5225 /* Read and convert blkpg */
5226 arg_type++;
5227 target_size = thunk_type_size(arg_type, 0);
5228 argptr = lock_user(VERIFY_READ, arg, target_size, 1);
5229 if (!argptr) {
5230 ret = -TARGET_EFAULT;
5231 goto out;
5232 }
5233 thunk_convert(buf_temp, argptr, arg_type, THUNK_HOST);
5234 unlock_user(argptr, arg, 0);
5235
5236 switch (host_blkpg->op) {
5237 case BLKPG_ADD_PARTITION:
5238 case BLKPG_DEL_PARTITION:
5239 /* payload is struct blkpg_partition */
5240 break;
5241 default:
5242 /* Unknown opcode */
5243 ret = -TARGET_EINVAL;
5244 goto out;
5245 }
5246
5247 /* Read and convert blkpg->data */
5248 arg = (abi_long)(uintptr_t)host_blkpg->data;
5249 target_size = thunk_type_size(part_arg_type, 0);
5250 argptr = lock_user(VERIFY_READ, arg, target_size, 1);
5251 if (!argptr) {
5252 ret = -TARGET_EFAULT;
5253 goto out;
5254 }
5255 thunk_convert(&host_part, argptr, part_arg_type, THUNK_HOST);
5256 unlock_user(argptr, arg, 0);
5257
5258 /* Swizzle the data pointer to our local copy and call! */
5259 host_blkpg->data = &host_part;
49ca6f3e 5260 ret = get_errno(safe_ioctl(fd, ie->host_cmd, host_blkpg));
a59b5e35
AG
5261
5262out:
5263 return ret;
5264}
5265
7ff7b666 5266static abi_long do_ioctl_rt(const IOCTLEntry *ie, uint8_t *buf_temp,
45c874eb 5267 int fd, int cmd, abi_long arg)
7ff7b666
LV
5268{
5269 const argtype *arg_type = ie->arg_type;
5270 const StructEntry *se;
5271 const argtype *field_types;
5272 const int *dst_offsets, *src_offsets;
5273 int target_size;
5274 void *argptr;
b78c522a
MAL
5275 abi_ulong *target_rt_dev_ptr = NULL;
5276 unsigned long *host_rt_dev_ptr = NULL;
7ff7b666
LV
5277 abi_long ret;
5278 int i;
5279
5280 assert(ie->access == IOC_W);
5281 assert(*arg_type == TYPE_PTR);
5282 arg_type++;
5283 assert(*arg_type == TYPE_STRUCT);
5284 target_size = thunk_type_size(arg_type, 0);
5285 argptr = lock_user(VERIFY_READ, arg, target_size, 1);
5286 if (!argptr) {
5287 return -TARGET_EFAULT;
5288 }
5289 arg_type++;
5290 assert(*arg_type == (int)STRUCT_rtentry);
5291 se = struct_entries + *arg_type++;
5292 assert(se->convert[0] == NULL);
5293 /* convert struct here to be able to catch rt_dev string */
5294 field_types = se->field_types;
5295 dst_offsets = se->field_offsets[THUNK_HOST];
5296 src_offsets = se->field_offsets[THUNK_TARGET];
5297 for (i = 0; i < se->nb_fields; i++) {
5298 if (dst_offsets[i] == offsetof(struct rtentry, rt_dev)) {
5299 assert(*field_types == TYPE_PTRVOID);
3d558330 5300 target_rt_dev_ptr = argptr + src_offsets[i];
7ff7b666
LV
5301 host_rt_dev_ptr = (unsigned long *)(buf_temp + dst_offsets[i]);
5302 if (*target_rt_dev_ptr != 0) {
5303 *host_rt_dev_ptr = (unsigned long)lock_user_string(
5304 tswapal(*target_rt_dev_ptr));
5305 if (!*host_rt_dev_ptr) {
5306 unlock_user(argptr, arg, 0);
5307 return -TARGET_EFAULT;
5308 }
5309 } else {
5310 *host_rt_dev_ptr = 0;
5311 }
5312 field_types++;
5313 continue;
5314 }
5315 field_types = thunk_convert(buf_temp + dst_offsets[i],
5316 argptr + src_offsets[i],
5317 field_types, THUNK_HOST);
5318 }
5319 unlock_user(argptr, arg, 0);
5320
49ca6f3e 5321 ret = get_errno(safe_ioctl(fd, ie->host_cmd, buf_temp));
b78c522a
MAL
5322
5323 assert(host_rt_dev_ptr != NULL);
5324 assert(target_rt_dev_ptr != NULL);
7ff7b666
LV
5325 if (*host_rt_dev_ptr != 0) {
5326 unlock_user((void *)*host_rt_dev_ptr,
5327 *target_rt_dev_ptr, 0);
5328 }
5329 return ret;
5330}
5331
ca56f5b5 5332static abi_long do_ioctl_kdsigaccept(const IOCTLEntry *ie, uint8_t *buf_temp,
45c874eb 5333 int fd, int cmd, abi_long arg)
ca56f5b5
PB
5334{
5335 int sig = target_to_host_signal(arg);
49ca6f3e 5336 return get_errno(safe_ioctl(fd, ie->host_cmd, sig));
ca56f5b5
PB
5337}
5338
6d5d5dde
DB
5339static abi_long do_ioctl_SIOCGSTAMP(const IOCTLEntry *ie, uint8_t *buf_temp,
5340 int fd, int cmd, abi_long arg)
5341{
5342 struct timeval tv;
5343 abi_long ret;
5344
5345 ret = get_errno(safe_ioctl(fd, SIOCGSTAMP, &tv));
5346 if (is_error(ret)) {
5347 return ret;
5348 }
5349
5350 if (cmd == (int)TARGET_SIOCGSTAMP_OLD) {
5351 if (copy_to_user_timeval(arg, &tv)) {
5352 return -TARGET_EFAULT;
5353 }
5354 } else {
5355 if (copy_to_user_timeval64(arg, &tv)) {
5356 return -TARGET_EFAULT;
5357 }
5358 }
5359
5360 return ret;
5361}
5362
5363static abi_long do_ioctl_SIOCGSTAMPNS(const IOCTLEntry *ie, uint8_t *buf_temp,
5364 int fd, int cmd, abi_long arg)
5365{
5366 struct timespec ts;
5367 abi_long ret;
5368
5369 ret = get_errno(safe_ioctl(fd, SIOCGSTAMPNS, &ts));
5370 if (is_error(ret)) {
5371 return ret;
5372 }
5373
5374 if (cmd == (int)TARGET_SIOCGSTAMPNS_OLD) {
5375 if (host_to_target_timespec(arg, &ts)) {
5376 return -TARGET_EFAULT;
5377 }
5378 } else{
5379 if (host_to_target_timespec64(arg, &ts)) {
5380 return -TARGET_EFAULT;
5381 }
5382 }
5383
5384 return ret;
5385}
5386
2b74f621
AS
5387#ifdef TIOCGPTPEER
5388static abi_long do_ioctl_tiocgptpeer(const IOCTLEntry *ie, uint8_t *buf_temp,
5389 int fd, int cmd, abi_long arg)
5390{
5391 int flags = target_to_host_bitmask(arg, fcntl_flags_tbl);
5392 return get_errno(safe_ioctl(fd, ie->host_cmd, flags));
5393}
5394#endif
5395
e865b97f
CG
5396#ifdef HAVE_DRM_H
5397
5398static void unlock_drm_version(struct drm_version *host_ver,
5399 struct target_drm_version *target_ver,
5400 bool copy)
5401{
5402 unlock_user(host_ver->name, target_ver->name,
5403 copy ? host_ver->name_len : 0);
5404 unlock_user(host_ver->date, target_ver->date,
5405 copy ? host_ver->date_len : 0);
5406 unlock_user(host_ver->desc, target_ver->desc,
5407 copy ? host_ver->desc_len : 0);
5408}
5409
5410static inline abi_long target_to_host_drmversion(struct drm_version *host_ver,
5411 struct target_drm_version *target_ver)
5412{
5413 memset(host_ver, 0, sizeof(*host_ver));
5414
5415 __get_user(host_ver->name_len, &target_ver->name_len);
5416 if (host_ver->name_len) {
5417 host_ver->name = lock_user(VERIFY_WRITE, target_ver->name,
5418 target_ver->name_len, 0);
5419 if (!host_ver->name) {
5420 return -EFAULT;
5421 }
5422 }
5423
5424 __get_user(host_ver->date_len, &target_ver->date_len);
5425 if (host_ver->date_len) {
5426 host_ver->date = lock_user(VERIFY_WRITE, target_ver->date,
5427 target_ver->date_len, 0);
5428 if (!host_ver->date) {
5429 goto err;
5430 }
5431 }
5432
5433 __get_user(host_ver->desc_len, &target_ver->desc_len);
5434 if (host_ver->desc_len) {
5435 host_ver->desc = lock_user(VERIFY_WRITE, target_ver->desc,
5436 target_ver->desc_len, 0);
5437 if (!host_ver->desc) {
5438 goto err;
5439 }
5440 }
5441
5442 return 0;
5443err:
5444 unlock_drm_version(host_ver, target_ver, false);
5445 return -EFAULT;
5446}
5447
5448static inline void host_to_target_drmversion(
5449 struct target_drm_version *target_ver,
5450 struct drm_version *host_ver)
5451{
5452 __put_user(host_ver->version_major, &target_ver->version_major);
5453 __put_user(host_ver->version_minor, &target_ver->version_minor);
5454 __put_user(host_ver->version_patchlevel, &target_ver->version_patchlevel);
5455 __put_user(host_ver->name_len, &target_ver->name_len);
5456 __put_user(host_ver->date_len, &target_ver->date_len);
5457 __put_user(host_ver->desc_len, &target_ver->desc_len);
5458 unlock_drm_version(host_ver, target_ver, true);
5459}
5460
5461static abi_long do_ioctl_drm(const IOCTLEntry *ie, uint8_t *buf_temp,
5462 int fd, int cmd, abi_long arg)
5463{
5464 struct drm_version *ver;
5465 struct target_drm_version *target_ver;
5466 abi_long ret;
5467
5468 switch (ie->host_cmd) {
5469 case DRM_IOCTL_VERSION:
5470 if (!lock_user_struct(VERIFY_WRITE, target_ver, arg, 0)) {
5471 return -TARGET_EFAULT;
5472 }
5473 ver = (struct drm_version *)buf_temp;
5474 ret = target_to_host_drmversion(ver, target_ver);
5475 if (!is_error(ret)) {
5476 ret = get_errno(safe_ioctl(fd, ie->host_cmd, ver));
5477 if (is_error(ret)) {
5478 unlock_drm_version(ver, target_ver, false);
5479 } else {
5480 host_to_target_drmversion(target_ver, ver);
5481 }
5482 }
5483 unlock_user_struct(target_ver, arg, 0);
5484 return ret;
5485 }
5486 return -TARGET_ENOSYS;
5487}
5488
913b03c2
CG
5489static abi_long do_ioctl_drm_i915_getparam(const IOCTLEntry *ie,
5490 struct drm_i915_getparam *gparam,
5491 int fd, abi_long arg)
5492{
5493 abi_long ret;
5494 int value;
5495 struct target_drm_i915_getparam *target_gparam;
5496
5497 if (!lock_user_struct(VERIFY_READ, target_gparam, arg, 0)) {
5498 return -TARGET_EFAULT;
5499 }
5500
5501 __get_user(gparam->param, &target_gparam->param);
5502 gparam->value = &value;
5503 ret = get_errno(safe_ioctl(fd, ie->host_cmd, gparam));
5504 put_user_s32(value, target_gparam->value);
5505
5506 unlock_user_struct(target_gparam, arg, 0);
5507 return ret;
5508}
5509
5510static abi_long do_ioctl_drm_i915(const IOCTLEntry *ie, uint8_t *buf_temp,
5511 int fd, int cmd, abi_long arg)
5512{
5513 switch (ie->host_cmd) {
5514 case DRM_IOCTL_I915_GETPARAM:
5515 return do_ioctl_drm_i915_getparam(ie,
5516 (struct drm_i915_getparam *)buf_temp,
5517 fd, arg);
5518 default:
5519 return -TARGET_ENOSYS;
5520 }
5521}
5522
e865b97f
CG
5523#endif
5524
6addf06a
SCW
5525static abi_long do_ioctl_TUNSETTXFILTER(const IOCTLEntry *ie, uint8_t *buf_temp,
5526 int fd, int cmd, abi_long arg)
5527{
5528 struct tun_filter *filter = (struct tun_filter *)buf_temp;
5529 struct tun_filter *target_filter;
5530 char *target_addr;
5531
5532 assert(ie->access == IOC_W);
5533
5534 target_filter = lock_user(VERIFY_READ, arg, sizeof(*target_filter), 1);
5535 if (!target_filter) {
5536 return -TARGET_EFAULT;
5537 }
5538 filter->flags = tswap16(target_filter->flags);
5539 filter->count = tswap16(target_filter->count);
5540 unlock_user(target_filter, arg, 0);
5541
5542 if (filter->count) {
5543 if (offsetof(struct tun_filter, addr) + filter->count * ETH_ALEN >
5544 MAX_STRUCT_SIZE) {
5545 return -TARGET_EFAULT;
5546 }
5547
5548 target_addr = lock_user(VERIFY_READ,
5549 arg + offsetof(struct tun_filter, addr),
5550 filter->count * ETH_ALEN, 1);
5551 if (!target_addr) {
5552 return -TARGET_EFAULT;
5553 }
5554 memcpy(filter->addr, target_addr, filter->count * ETH_ALEN);
5555 unlock_user(target_addr, arg + offsetof(struct tun_filter, addr), 0);
5556 }
5557
5558 return get_errno(safe_ioctl(fd, ie->host_cmd, filter));
5559}
5560
79482e59 5561IOCTLEntry ioctl_entries[] = {
001faf32 5562#define IOCTL(cmd, access, ...) \
d2ef05bb
PM
5563 { TARGET_ ## cmd, cmd, #cmd, access, 0, { __VA_ARGS__ } },
5564#define IOCTL_SPECIAL(cmd, access, dofn, ...) \
5565 { TARGET_ ## cmd, cmd, #cmd, access, dofn, { __VA_ARGS__ } },
8cb762fe
HD
5566#define IOCTL_IGNORE(cmd) \
5567 { TARGET_ ## cmd, 0, #cmd },
31e31b8a
FB
5568#include "ioctls.h"
5569 { 0, 0, },
5570};
5571
53a5960a 5572/* ??? Implement proper locking for ioctls. */
0da46a6e 5573/* do_ioctl() Must return target values and target errnos. */
45c874eb 5574static abi_long do_ioctl(int fd, int cmd, abi_long arg)
31e31b8a
FB
5575{
5576 const IOCTLEntry *ie;
5577 const argtype *arg_type;
992f48a0 5578 abi_long ret;
31e31b8a 5579 uint8_t buf_temp[MAX_STRUCT_SIZE];
53a5960a
PB
5580 int target_size;
5581 void *argptr;
31e31b8a
FB
5582
5583 ie = ioctl_entries;
5584 for(;;) {
5585 if (ie->target_cmd == 0) {
39be5350
JK
5586 qemu_log_mask(
5587 LOG_UNIMP, "Unsupported ioctl: cmd=0x%04lx\n", (long)cmd);
59d11727 5588 return -TARGET_ENOTTY;
31e31b8a
FB
5589 }
5590 if (ie->target_cmd == cmd)
5591 break;
5592 ie++;
5593 }
5594 arg_type = ie->arg_type;
d2ef05bb
PM
5595 if (ie->do_ioctl) {
5596 return ie->do_ioctl(ie, buf_temp, fd, cmd, arg);
8cb762fe
HD
5597 } else if (!ie->host_cmd) {
5598 /* Some architectures define BSD ioctls in their headers
5599 that are not implemented in Linux. */
59d11727 5600 return -TARGET_ENOTTY;
d2ef05bb
PM
5601 }
5602
31e31b8a
FB
5603 switch(arg_type[0]) {
5604 case TYPE_NULL:
5605 /* no argument */
49ca6f3e 5606 ret = get_errno(safe_ioctl(fd, ie->host_cmd));
31e31b8a
FB
5607 break;
5608 case TYPE_PTRVOID:
5609 case TYPE_INT:
c858e537
FB
5610 case TYPE_LONG:
5611 case TYPE_ULONG:
49ca6f3e 5612 ret = get_errno(safe_ioctl(fd, ie->host_cmd, arg));
31e31b8a
FB
5613 break;
5614 case TYPE_PTR:
5615 arg_type++;
53a5960a 5616 target_size = thunk_type_size(arg_type, 0);
31e31b8a
FB
5617 switch(ie->access) {
5618 case IOC_R:
49ca6f3e 5619 ret = get_errno(safe_ioctl(fd, ie->host_cmd, buf_temp));
31e31b8a 5620 if (!is_error(ret)) {
579a97f7
FB
5621 argptr = lock_user(VERIFY_WRITE, arg, target_size, 0);
5622 if (!argptr)
5623 return -TARGET_EFAULT;
53a5960a
PB
5624 thunk_convert(argptr, buf_temp, arg_type, THUNK_TARGET);
5625 unlock_user(argptr, arg, target_size);
31e31b8a
FB
5626 }
5627 break;
5628 case IOC_W:
579a97f7
FB
5629 argptr = lock_user(VERIFY_READ, arg, target_size, 1);
5630 if (!argptr)
5631 return -TARGET_EFAULT;
53a5960a
PB
5632 thunk_convert(buf_temp, argptr, arg_type, THUNK_HOST);
5633 unlock_user(argptr, arg, 0);
49ca6f3e 5634 ret = get_errno(safe_ioctl(fd, ie->host_cmd, buf_temp));
31e31b8a
FB
5635 break;
5636 default:
5637 case IOC_RW:
579a97f7
FB
5638 argptr = lock_user(VERIFY_READ, arg, target_size, 1);
5639 if (!argptr)
5640 return -TARGET_EFAULT;
53a5960a
PB
5641 thunk_convert(buf_temp, argptr, arg_type, THUNK_HOST);
5642 unlock_user(argptr, arg, 0);
49ca6f3e 5643 ret = get_errno(safe_ioctl(fd, ie->host_cmd, buf_temp));
31e31b8a 5644 if (!is_error(ret)) {
579a97f7
FB
5645 argptr = lock_user(VERIFY_WRITE, arg, target_size, 0);
5646 if (!argptr)
5647 return -TARGET_EFAULT;
53a5960a
PB
5648 thunk_convert(argptr, buf_temp, arg_type, THUNK_TARGET);
5649 unlock_user(argptr, arg, target_size);
31e31b8a
FB
5650 }
5651 break;
5652 }
5653 break;
5654 default:
39be5350
JK
5655 qemu_log_mask(LOG_UNIMP,
5656 "Unsupported ioctl type: cmd=0x%04lx type=%d\n",
5657 (long)cmd, arg_type[0]);
59d11727 5658 ret = -TARGET_ENOTTY;
31e31b8a
FB
5659 break;
5660 }
5661 return ret;
5662}
5663
b39bc503 5664static const bitmask_transtbl iflag_tbl[] = {
31e31b8a
FB
5665 { TARGET_IGNBRK, TARGET_IGNBRK, IGNBRK, IGNBRK },
5666 { TARGET_BRKINT, TARGET_BRKINT, BRKINT, BRKINT },
5667 { TARGET_IGNPAR, TARGET_IGNPAR, IGNPAR, IGNPAR },
5668 { TARGET_PARMRK, TARGET_PARMRK, PARMRK, PARMRK },
5669 { TARGET_INPCK, TARGET_INPCK, INPCK, INPCK },
5670 { TARGET_ISTRIP, TARGET_ISTRIP, ISTRIP, ISTRIP },
5671 { TARGET_INLCR, TARGET_INLCR, INLCR, INLCR },
5672 { TARGET_IGNCR, TARGET_IGNCR, IGNCR, IGNCR },
5673 { TARGET_ICRNL, TARGET_ICRNL, ICRNL, ICRNL },
5674 { TARGET_IUCLC, TARGET_IUCLC, IUCLC, IUCLC },
5675 { TARGET_IXON, TARGET_IXON, IXON, IXON },
5676 { TARGET_IXANY, TARGET_IXANY, IXANY, IXANY },
5677 { TARGET_IXOFF, TARGET_IXOFF, IXOFF, IXOFF },
5678 { TARGET_IMAXBEL, TARGET_IMAXBEL, IMAXBEL, IMAXBEL },
c218b4ed 5679 { TARGET_IUTF8, TARGET_IUTF8, IUTF8, IUTF8},
31e31b8a
FB
5680};
5681
b39bc503 5682static const bitmask_transtbl oflag_tbl[] = {
31e31b8a
FB
5683 { TARGET_OPOST, TARGET_OPOST, OPOST, OPOST },
5684 { TARGET_OLCUC, TARGET_OLCUC, OLCUC, OLCUC },
5685 { TARGET_ONLCR, TARGET_ONLCR, ONLCR, ONLCR },
5686 { TARGET_OCRNL, TARGET_OCRNL, OCRNL, OCRNL },
5687 { TARGET_ONOCR, TARGET_ONOCR, ONOCR, ONOCR },
5688 { TARGET_ONLRET, TARGET_ONLRET, ONLRET, ONLRET },
5689 { TARGET_OFILL, TARGET_OFILL, OFILL, OFILL },
5690 { TARGET_OFDEL, TARGET_OFDEL, OFDEL, OFDEL },
5691 { TARGET_NLDLY, TARGET_NL0, NLDLY, NL0 },
5692 { TARGET_NLDLY, TARGET_NL1, NLDLY, NL1 },
5693 { TARGET_CRDLY, TARGET_CR0, CRDLY, CR0 },
5694 { TARGET_CRDLY, TARGET_CR1, CRDLY, CR1 },
5695 { TARGET_CRDLY, TARGET_CR2, CRDLY, CR2 },
5696 { TARGET_CRDLY, TARGET_CR3, CRDLY, CR3 },
5697 { TARGET_TABDLY, TARGET_TAB0, TABDLY, TAB0 },
5698 { TARGET_TABDLY, TARGET_TAB1, TABDLY, TAB1 },
5699 { TARGET_TABDLY, TARGET_TAB2, TABDLY, TAB2 },
5700 { TARGET_TABDLY, TARGET_TAB3, TABDLY, TAB3 },
5701 { TARGET_BSDLY, TARGET_BS0, BSDLY, BS0 },
5702 { TARGET_BSDLY, TARGET_BS1, BSDLY, BS1 },
5703 { TARGET_VTDLY, TARGET_VT0, VTDLY, VT0 },
5704 { TARGET_VTDLY, TARGET_VT1, VTDLY, VT1 },
5705 { TARGET_FFDLY, TARGET_FF0, FFDLY, FF0 },
5706 { TARGET_FFDLY, TARGET_FF1, FFDLY, FF1 },
31e31b8a
FB
5707};
5708
b39bc503 5709static const bitmask_transtbl cflag_tbl[] = {
31e31b8a
FB
5710 { TARGET_CBAUD, TARGET_B0, CBAUD, B0 },
5711 { TARGET_CBAUD, TARGET_B50, CBAUD, B50 },
5712 { TARGET_CBAUD, TARGET_B75, CBAUD, B75 },
5713 { TARGET_CBAUD, TARGET_B110, CBAUD, B110 },
5714 { TARGET_CBAUD, TARGET_B134, CBAUD, B134 },
5715 { TARGET_CBAUD, TARGET_B150, CBAUD, B150 },
5716 { TARGET_CBAUD, TARGET_B200, CBAUD, B200 },
5717 { TARGET_CBAUD, TARGET_B300, CBAUD, B300 },
5718 { TARGET_CBAUD, TARGET_B600, CBAUD, B600 },
5719 { TARGET_CBAUD, TARGET_B1200, CBAUD, B1200 },
5720 { TARGET_CBAUD, TARGET_B1800, CBAUD, B1800 },
5721 { TARGET_CBAUD, TARGET_B2400, CBAUD, B2400 },
5722 { TARGET_CBAUD, TARGET_B4800, CBAUD, B4800 },
5723 { TARGET_CBAUD, TARGET_B9600, CBAUD, B9600 },
5724 { TARGET_CBAUD, TARGET_B19200, CBAUD, B19200 },
5725 { TARGET_CBAUD, TARGET_B38400, CBAUD, B38400 },
5726 { TARGET_CBAUD, TARGET_B57600, CBAUD, B57600 },
5727 { TARGET_CBAUD, TARGET_B115200, CBAUD, B115200 },
5728 { TARGET_CBAUD, TARGET_B230400, CBAUD, B230400 },
5729 { TARGET_CBAUD, TARGET_B460800, CBAUD, B460800 },
5730 { TARGET_CSIZE, TARGET_CS5, CSIZE, CS5 },
5731 { TARGET_CSIZE, TARGET_CS6, CSIZE, CS6 },
5732 { TARGET_CSIZE, TARGET_CS7, CSIZE, CS7 },
5733 { TARGET_CSIZE, TARGET_CS8, CSIZE, CS8 },
5734 { TARGET_CSTOPB, TARGET_CSTOPB, CSTOPB, CSTOPB },
5735 { TARGET_CREAD, TARGET_CREAD, CREAD, CREAD },
5736 { TARGET_PARENB, TARGET_PARENB, PARENB, PARENB },
5737 { TARGET_PARODD, TARGET_PARODD, PARODD, PARODD },
5738 { TARGET_HUPCL, TARGET_HUPCL, HUPCL, HUPCL },
5739 { TARGET_CLOCAL, TARGET_CLOCAL, CLOCAL, CLOCAL },
5740 { TARGET_CRTSCTS, TARGET_CRTSCTS, CRTSCTS, CRTSCTS },
31e31b8a
FB
5741};
5742
b39bc503 5743static const bitmask_transtbl lflag_tbl[] = {
c218b4ed
FB
5744 { TARGET_ISIG, TARGET_ISIG, ISIG, ISIG },
5745 { TARGET_ICANON, TARGET_ICANON, ICANON, ICANON },
5746 { TARGET_XCASE, TARGET_XCASE, XCASE, XCASE },
5747 { TARGET_ECHO, TARGET_ECHO, ECHO, ECHO },
5748 { TARGET_ECHOE, TARGET_ECHOE, ECHOE, ECHOE },
5749 { TARGET_ECHOK, TARGET_ECHOK, ECHOK, ECHOK },
5750 { TARGET_ECHONL, TARGET_ECHONL, ECHONL, ECHONL },
5751 { TARGET_NOFLSH, TARGET_NOFLSH, NOFLSH, NOFLSH },
5752 { TARGET_TOSTOP, TARGET_TOSTOP, TOSTOP, TOSTOP },
5753 { TARGET_ECHOCTL, TARGET_ECHOCTL, ECHOCTL, ECHOCTL },
5754 { TARGET_ECHOPRT, TARGET_ECHOPRT, ECHOPRT, ECHOPRT },
5755 { TARGET_ECHOKE, TARGET_ECHOKE, ECHOKE, ECHOKE },
5756 { TARGET_FLUSHO, TARGET_FLUSHO, FLUSHO, FLUSHO },
5757 { TARGET_PENDIN, TARGET_PENDIN, PENDIN, PENDIN },
5758 { TARGET_IEXTEN, TARGET_IEXTEN, IEXTEN, IEXTEN },
5759 { TARGET_EXTPROC, TARGET_EXTPROC, EXTPROC, EXTPROC},
31e31b8a
FB
5760};
5761
5762static void target_to_host_termios (void *dst, const void *src)
5763{
5764 struct host_termios *host = dst;
5765 const struct target_termios *target = src;
3b46e624 5766
5fafdf24 5767 host->c_iflag =
31e31b8a 5768 target_to_host_bitmask(tswap32(target->c_iflag), iflag_tbl);
5fafdf24 5769 host->c_oflag =
31e31b8a 5770 target_to_host_bitmask(tswap32(target->c_oflag), oflag_tbl);
5fafdf24 5771 host->c_cflag =
31e31b8a 5772 target_to_host_bitmask(tswap32(target->c_cflag), cflag_tbl);
5fafdf24 5773 host->c_lflag =
31e31b8a
FB
5774 target_to_host_bitmask(tswap32(target->c_lflag), lflag_tbl);
5775 host->c_line = target->c_line;
3b46e624 5776
44607123 5777 memset(host->c_cc, 0, sizeof(host->c_cc));
5fafdf24
TS
5778 host->c_cc[VINTR] = target->c_cc[TARGET_VINTR];
5779 host->c_cc[VQUIT] = target->c_cc[TARGET_VQUIT];
3b46e624 5780 host->c_cc[VERASE] = target->c_cc[TARGET_VERASE];
5fafdf24 5781 host->c_cc[VKILL] = target->c_cc[TARGET_VKILL];
3b46e624 5782 host->c_cc[VEOF] = target->c_cc[TARGET_VEOF];
5fafdf24 5783 host->c_cc[VTIME] = target->c_cc[TARGET_VTIME];
3b46e624 5784 host->c_cc[VMIN] = target->c_cc[TARGET_VMIN];
5fafdf24 5785 host->c_cc[VSWTC] = target->c_cc[TARGET_VSWTC];
3b46e624 5786 host->c_cc[VSTART] = target->c_cc[TARGET_VSTART];
5fafdf24
TS
5787 host->c_cc[VSTOP] = target->c_cc[TARGET_VSTOP];
5788 host->c_cc[VSUSP] = target->c_cc[TARGET_VSUSP];
3b46e624
TS
5789 host->c_cc[VEOL] = target->c_cc[TARGET_VEOL];
5790 host->c_cc[VREPRINT] = target->c_cc[TARGET_VREPRINT];
5791 host->c_cc[VDISCARD] = target->c_cc[TARGET_VDISCARD];
5792 host->c_cc[VWERASE] = target->c_cc[TARGET_VWERASE];
5793 host->c_cc[VLNEXT] = target->c_cc[TARGET_VLNEXT];
5fafdf24 5794 host->c_cc[VEOL2] = target->c_cc[TARGET_VEOL2];
31e31b8a 5795}
3b46e624 5796
31e31b8a
FB
5797static void host_to_target_termios (void *dst, const void *src)
5798{
5799 struct target_termios *target = dst;
5800 const struct host_termios *host = src;
5801
5fafdf24 5802 target->c_iflag =
31e31b8a 5803 tswap32(host_to_target_bitmask(host->c_iflag, iflag_tbl));
5fafdf24 5804 target->c_oflag =
31e31b8a 5805 tswap32(host_to_target_bitmask(host->c_oflag, oflag_tbl));
5fafdf24 5806 target->c_cflag =
31e31b8a 5807 tswap32(host_to_target_bitmask(host->c_cflag, cflag_tbl));
5fafdf24 5808 target->c_lflag =
31e31b8a
FB
5809 tswap32(host_to_target_bitmask(host->c_lflag, lflag_tbl));
5810 target->c_line = host->c_line;
3b46e624 5811
44607123 5812 memset(target->c_cc, 0, sizeof(target->c_cc));
31e31b8a
FB
5813 target->c_cc[TARGET_VINTR] = host->c_cc[VINTR];
5814 target->c_cc[TARGET_VQUIT] = host->c_cc[VQUIT];
5815 target->c_cc[TARGET_VERASE] = host->c_cc[VERASE];
5816 target->c_cc[TARGET_VKILL] = host->c_cc[VKILL];
5817 target->c_cc[TARGET_VEOF] = host->c_cc[VEOF];
5818 target->c_cc[TARGET_VTIME] = host->c_cc[VTIME];
5819 target->c_cc[TARGET_VMIN] = host->c_cc[VMIN];
5820 target->c_cc[TARGET_VSWTC] = host->c_cc[VSWTC];
5821 target->c_cc[TARGET_VSTART] = host->c_cc[VSTART];
5822 target->c_cc[TARGET_VSTOP] = host->c_cc[VSTOP];
5823 target->c_cc[TARGET_VSUSP] = host->c_cc[VSUSP];
5824 target->c_cc[TARGET_VEOL] = host->c_cc[VEOL];
5825 target->c_cc[TARGET_VREPRINT] = host->c_cc[VREPRINT];
5826 target->c_cc[TARGET_VDISCARD] = host->c_cc[VDISCARD];
5827 target->c_cc[TARGET_VWERASE] = host->c_cc[VWERASE];
5828 target->c_cc[TARGET_VLNEXT] = host->c_cc[VLNEXT];
5829 target->c_cc[TARGET_VEOL2] = host->c_cc[VEOL2];
5830}
5831
8e853dc7 5832static const StructEntry struct_termios_def = {
31e31b8a
FB
5833 .convert = { host_to_target_termios, target_to_host_termios },
5834 .size = { sizeof(struct target_termios), sizeof(struct host_termios) },
5835 .align = { __alignof__(struct target_termios), __alignof__(struct host_termios) },
888468db 5836 .print = print_termios,
31e31b8a
FB
5837};
5838
4b840f96
RH
5839/* If the host does not provide these bits, they may be safely discarded. */
5840#ifndef MAP_SYNC
5841#define MAP_SYNC 0
5842#endif
5843#ifndef MAP_UNINITIALIZED
5844#define MAP_UNINITIALIZED 0
5845#endif
5846
180d4ef3 5847static const bitmask_transtbl mmap_flags_tbl[] = {
541e1690
HD
5848 { TARGET_MAP_FIXED, TARGET_MAP_FIXED, MAP_FIXED, MAP_FIXED },
5849 { TARGET_MAP_ANONYMOUS, TARGET_MAP_ANONYMOUS,
5850 MAP_ANONYMOUS, MAP_ANONYMOUS },
5851 { TARGET_MAP_GROWSDOWN, TARGET_MAP_GROWSDOWN,
5852 MAP_GROWSDOWN, MAP_GROWSDOWN },
5853 { TARGET_MAP_DENYWRITE, TARGET_MAP_DENYWRITE,
5854 MAP_DENYWRITE, MAP_DENYWRITE },
5855 { TARGET_MAP_EXECUTABLE, TARGET_MAP_EXECUTABLE,
5856 MAP_EXECUTABLE, MAP_EXECUTABLE },
5857 { TARGET_MAP_LOCKED, TARGET_MAP_LOCKED, MAP_LOCKED, MAP_LOCKED },
5858 { TARGET_MAP_NORESERVE, TARGET_MAP_NORESERVE,
5859 MAP_NORESERVE, MAP_NORESERVE },
5860 { TARGET_MAP_HUGETLB, TARGET_MAP_HUGETLB, MAP_HUGETLB, MAP_HUGETLB },
5861 /* MAP_STACK had been ignored by the kernel for quite some time.
5862 Recognize it for the target insofar as we do not want to pass
5863 it through to the host. */
5864 { TARGET_MAP_STACK, TARGET_MAP_STACK, 0, 0 },
4b840f96
RH
5865 { TARGET_MAP_NONBLOCK, TARGET_MAP_NONBLOCK, MAP_NONBLOCK, MAP_NONBLOCK },
5866 { TARGET_MAP_POPULATE, TARGET_MAP_POPULATE, MAP_POPULATE, MAP_POPULATE },
5867 { TARGET_MAP_FIXED_NOREPLACE, TARGET_MAP_FIXED_NOREPLACE,
5868 MAP_FIXED_NOREPLACE, MAP_FIXED_NOREPLACE },
5869 { TARGET_MAP_UNINITIALIZED, TARGET_MAP_UNINITIALIZED,
5870 MAP_UNINITIALIZED, MAP_UNINITIALIZED },
5286db75
FB
5871};
5872
9ab8d071
RH
5873/*
5874 * Arrange for legacy / undefined architecture specific flags to be
5875 * ignored by mmap handling code.
5876 */
5877#ifndef TARGET_MAP_32BIT
5878#define TARGET_MAP_32BIT 0
5879#endif
5880#ifndef TARGET_MAP_HUGE_2MB
5881#define TARGET_MAP_HUGE_2MB 0
5882#endif
5883#ifndef TARGET_MAP_HUGE_1GB
5884#define TARGET_MAP_HUGE_1GB 0
5885#endif
5886
5887static abi_long do_mmap(abi_ulong addr, abi_ulong len, int prot,
5888 int target_flags, int fd, off_t offset)
5889{
5890 /*
5891 * The historical set of flags that all mmap types implicitly support.
5892 */
5893 enum {
5894 TARGET_LEGACY_MAP_MASK = TARGET_MAP_SHARED
5895 | TARGET_MAP_PRIVATE
5896 | TARGET_MAP_FIXED
5897 | TARGET_MAP_ANONYMOUS
5898 | TARGET_MAP_DENYWRITE
5899 | TARGET_MAP_EXECUTABLE
5900 | TARGET_MAP_UNINITIALIZED
5901 | TARGET_MAP_GROWSDOWN
5902 | TARGET_MAP_LOCKED
5903 | TARGET_MAP_NORESERVE
5904 | TARGET_MAP_POPULATE
5905 | TARGET_MAP_NONBLOCK
5906 | TARGET_MAP_STACK
5907 | TARGET_MAP_HUGETLB
5908 | TARGET_MAP_32BIT
5909 | TARGET_MAP_HUGE_2MB
5910 | TARGET_MAP_HUGE_1GB
5911 };
5912 int host_flags;
5913
5914 switch (target_flags & TARGET_MAP_TYPE) {
5915 case TARGET_MAP_PRIVATE:
5916 host_flags = MAP_PRIVATE;
5917 break;
5918 case TARGET_MAP_SHARED:
5919 host_flags = MAP_SHARED;
5920 break;
5921 case TARGET_MAP_SHARED_VALIDATE:
5922 /*
5923 * MAP_SYNC is only supported for MAP_SHARED_VALIDATE, and is
5924 * therefore omitted from mmap_flags_tbl and TARGET_LEGACY_MAP_MASK.
5925 */
5926 if (target_flags & ~(TARGET_LEGACY_MAP_MASK | TARGET_MAP_SYNC)) {
5927 return -TARGET_EOPNOTSUPP;
5928 }
5929 host_flags = MAP_SHARED_VALIDATE;
5930 if (target_flags & TARGET_MAP_SYNC) {
5931 host_flags |= MAP_SYNC;
5932 }
5933 break;
5934 default:
5935 return -TARGET_EINVAL;
5936 }
5937 host_flags |= target_to_host_bitmask(target_flags, mmap_flags_tbl);
5938
5939 return get_errno(target_mmap(addr, len, prot, host_flags, fd, offset));
5940}
5941
9d12f79d
LV
5942/*
5943 * NOTE: TARGET_ABI32 is defined for TARGET_I386 (but not for TARGET_X86_64)
5944 * TARGET_I386 is defined if TARGET_X86_64 is defined
5945 */
2ab83ea7 5946#if defined(TARGET_I386)
6dbad63e
FB
5947
5948/* NOTE: there is really one LDT for all the threads */
b1d8e52e 5949static uint8_t *ldt_table;
6dbad63e 5950
03acab66 5951static abi_long read_ldt(abi_ulong ptr, unsigned long bytecount)
6dbad63e
FB
5952{
5953 int size;
53a5960a 5954 void *p;
6dbad63e
FB
5955
5956 if (!ldt_table)
5957 return 0;
5958 size = TARGET_LDT_ENTRIES * TARGET_LDT_ENTRY_SIZE;
5959 if (size > bytecount)
5960 size = bytecount;
579a97f7
FB
5961 p = lock_user(VERIFY_WRITE, ptr, size, 0);
5962 if (!p)
03acab66 5963 return -TARGET_EFAULT;
579a97f7 5964 /* ??? Should this by byteswapped? */
53a5960a
PB
5965 memcpy(p, ldt_table, size);
5966 unlock_user(p, ptr, size);
6dbad63e
FB
5967 return size;
5968}
5969
5970/* XXX: add locking support */
03acab66
FB
5971static abi_long write_ldt(CPUX86State *env,
5972 abi_ulong ptr, unsigned long bytecount, int oldmode)
6dbad63e
FB
5973{
5974 struct target_modify_ldt_ldt_s ldt_info;
53a5960a 5975 struct target_modify_ldt_ldt_s *target_ldt_info;
6dbad63e 5976 int seg_32bit, contents, read_exec_only, limit_in_pages;
8d18e893 5977 int seg_not_present, useable, lm;
6dbad63e
FB
5978 uint32_t *lp, entry_1, entry_2;
5979
5980 if (bytecount != sizeof(ldt_info))
03acab66 5981 return -TARGET_EINVAL;
579a97f7 5982 if (!lock_user_struct(VERIFY_READ, target_ldt_info, ptr, 1))
03acab66 5983 return -TARGET_EFAULT;
53a5960a 5984 ldt_info.entry_number = tswap32(target_ldt_info->entry_number);
cbb21eed 5985 ldt_info.base_addr = tswapal(target_ldt_info->base_addr);
53a5960a
PB
5986 ldt_info.limit = tswap32(target_ldt_info->limit);
5987 ldt_info.flags = tswap32(target_ldt_info->flags);
5988 unlock_user_struct(target_ldt_info, ptr, 0);
3b46e624 5989
6dbad63e 5990 if (ldt_info.entry_number >= TARGET_LDT_ENTRIES)
03acab66 5991 return -TARGET_EINVAL;
6dbad63e
FB
5992 seg_32bit = ldt_info.flags & 1;
5993 contents = (ldt_info.flags >> 1) & 3;
5994 read_exec_only = (ldt_info.flags >> 3) & 1;
5995 limit_in_pages = (ldt_info.flags >> 4) & 1;
5996 seg_not_present = (ldt_info.flags >> 5) & 1;
5997 useable = (ldt_info.flags >> 6) & 1;
8d18e893
FB
5998#ifdef TARGET_ABI32
5999 lm = 0;
6000#else
6001 lm = (ldt_info.flags >> 7) & 1;
6002#endif
6dbad63e
FB
6003 if (contents == 3) {
6004 if (oldmode)
03acab66 6005 return -TARGET_EINVAL;
6dbad63e 6006 if (seg_not_present == 0)
03acab66 6007 return -TARGET_EINVAL;
6dbad63e
FB
6008 }
6009 /* allocate the LDT */
6010 if (!ldt_table) {
e441570f
AZ
6011 env->ldt.base = target_mmap(0,
6012 TARGET_LDT_ENTRIES * TARGET_LDT_ENTRY_SIZE,
6013 PROT_READ|PROT_WRITE,
6014 MAP_ANONYMOUS|MAP_PRIVATE, -1, 0);
6015 if (env->ldt.base == -1)
03acab66 6016 return -TARGET_ENOMEM;
3e8f1628 6017 memset(g2h_untagged(env->ldt.base), 0,
e441570f 6018 TARGET_LDT_ENTRIES * TARGET_LDT_ENTRY_SIZE);
6dbad63e 6019 env->ldt.limit = 0xffff;
3e8f1628 6020 ldt_table = g2h_untagged(env->ldt.base);
6dbad63e
FB
6021 }
6022
6023 /* NOTE: same code as Linux kernel */
6024 /* Allow LDTs to be cleared by the user. */
6025 if (ldt_info.base_addr == 0 && ldt_info.limit == 0) {
6026 if (oldmode ||
6027 (contents == 0 &&
6028 read_exec_only == 1 &&
6029 seg_32bit == 0 &&
6030 limit_in_pages == 0 &&
6031 seg_not_present == 1 &&
6032 useable == 0 )) {
6033 entry_1 = 0;
6034 entry_2 = 0;
6035 goto install;
6036 }
6037 }
3b46e624 6038
6dbad63e
FB
6039 entry_1 = ((ldt_info.base_addr & 0x0000ffff) << 16) |
6040 (ldt_info.limit & 0x0ffff);
6041 entry_2 = (ldt_info.base_addr & 0xff000000) |
6042 ((ldt_info.base_addr & 0x00ff0000) >> 16) |
6043 (ldt_info.limit & 0xf0000) |
6044 ((read_exec_only ^ 1) << 9) |
6045 (contents << 10) |
6046 ((seg_not_present ^ 1) << 15) |
6047 (seg_32bit << 22) |
6048 (limit_in_pages << 23) |
8d18e893 6049 (lm << 21) |
6dbad63e
FB
6050 0x7000;
6051 if (!oldmode)
6052 entry_2 |= (useable << 20);
14ae3ba7 6053
6dbad63e
FB
6054 /* Install the new entry ... */
6055install:
6056 lp = (uint32_t *)(ldt_table + (ldt_info.entry_number << 3));
6057 lp[0] = tswap32(entry_1);
6058 lp[1] = tswap32(entry_2);
6059 return 0;
6060}
6061
6062/* specific and weird i386 syscalls */
8fcd3692
BS
6063static abi_long do_modify_ldt(CPUX86State *env, int func, abi_ulong ptr,
6064 unsigned long bytecount)
6dbad63e 6065{
03acab66 6066 abi_long ret;
3b46e624 6067
6dbad63e
FB
6068 switch (func) {
6069 case 0:
6070 ret = read_ldt(ptr, bytecount);
6071 break;
6072 case 1:
6073 ret = write_ldt(env, ptr, bytecount, 1);
6074 break;
6075 case 0x11:
6076 ret = write_ldt(env, ptr, bytecount, 0);
6077 break;
03acab66
FB
6078 default:
6079 ret = -TARGET_ENOSYS;
6080 break;
6dbad63e
FB
6081 }
6082 return ret;
6083}
1b6b029e 6084
9d12f79d 6085#if defined(TARGET_ABI32)
bc22eb44 6086abi_long do_set_thread_area(CPUX86State *env, abi_ulong ptr)
8d18e893 6087{
3e8f1628 6088 uint64_t *gdt_table = g2h_untagged(env->gdt.base);
8d18e893
FB
6089 struct target_modify_ldt_ldt_s ldt_info;
6090 struct target_modify_ldt_ldt_s *target_ldt_info;
6091 int seg_32bit, contents, read_exec_only, limit_in_pages;
6092 int seg_not_present, useable, lm;
6093 uint32_t *lp, entry_1, entry_2;
6094 int i;
6095
6096 lock_user_struct(VERIFY_WRITE, target_ldt_info, ptr, 1);
6097 if (!target_ldt_info)
6098 return -TARGET_EFAULT;
6099 ldt_info.entry_number = tswap32(target_ldt_info->entry_number);
cbb21eed 6100 ldt_info.base_addr = tswapal(target_ldt_info->base_addr);
8d18e893
FB
6101 ldt_info.limit = tswap32(target_ldt_info->limit);
6102 ldt_info.flags = tswap32(target_ldt_info->flags);
6103 if (ldt_info.entry_number == -1) {
6104 for (i=TARGET_GDT_ENTRY_TLS_MIN; i<=TARGET_GDT_ENTRY_TLS_MAX; i++) {
6105 if (gdt_table[i] == 0) {
6106 ldt_info.entry_number = i;
6107 target_ldt_info->entry_number = tswap32(i);
6108 break;
6109 }
6110 }
6111 }
6112 unlock_user_struct(target_ldt_info, ptr, 1);
6113
6114 if (ldt_info.entry_number < TARGET_GDT_ENTRY_TLS_MIN ||
6115 ldt_info.entry_number > TARGET_GDT_ENTRY_TLS_MAX)
6116 return -TARGET_EINVAL;
6117 seg_32bit = ldt_info.flags & 1;
6118 contents = (ldt_info.flags >> 1) & 3;
6119 read_exec_only = (ldt_info.flags >> 3) & 1;
6120 limit_in_pages = (ldt_info.flags >> 4) & 1;
6121 seg_not_present = (ldt_info.flags >> 5) & 1;
6122 useable = (ldt_info.flags >> 6) & 1;
6123#ifdef TARGET_ABI32
6124 lm = 0;
6125#else
6126 lm = (ldt_info.flags >> 7) & 1;
6127#endif
6128
6129 if (contents == 3) {
6130 if (seg_not_present == 0)
6131 return -TARGET_EINVAL;
6132 }
6133
6134 /* NOTE: same code as Linux kernel */
6135 /* Allow LDTs to be cleared by the user. */
6136 if (ldt_info.base_addr == 0 && ldt_info.limit == 0) {
6137 if ((contents == 0 &&
6138 read_exec_only == 1 &&
6139 seg_32bit == 0 &&
6140 limit_in_pages == 0 &&
6141 seg_not_present == 1 &&
6142 useable == 0 )) {
6143 entry_1 = 0;
6144 entry_2 = 0;
6145 goto install;
6146 }
6147 }
6148
6149 entry_1 = ((ldt_info.base_addr & 0x0000ffff) << 16) |
6150 (ldt_info.limit & 0x0ffff);
6151 entry_2 = (ldt_info.base_addr & 0xff000000) |
6152 ((ldt_info.base_addr & 0x00ff0000) >> 16) |
6153 (ldt_info.limit & 0xf0000) |
6154 ((read_exec_only ^ 1) << 9) |
6155 (contents << 10) |
6156 ((seg_not_present ^ 1) << 15) |
6157 (seg_32bit << 22) |
6158 (limit_in_pages << 23) |
6159 (useable << 20) |
6160 (lm << 21) |
6161 0x7000;
6162
6163 /* Install the new entry ... */
6164install:
6165 lp = (uint32_t *)(gdt_table + ldt_info.entry_number);
6166 lp[0] = tswap32(entry_1);
6167 lp[1] = tswap32(entry_2);
6168 return 0;
6169}
6170
8fcd3692 6171static abi_long do_get_thread_area(CPUX86State *env, abi_ulong ptr)
8d18e893
FB
6172{
6173 struct target_modify_ldt_ldt_s *target_ldt_info;
3e8f1628 6174 uint64_t *gdt_table = g2h_untagged(env->gdt.base);
8d18e893
FB
6175 uint32_t base_addr, limit, flags;
6176 int seg_32bit, contents, read_exec_only, limit_in_pages, idx;
6177 int seg_not_present, useable, lm;
6178 uint32_t *lp, entry_1, entry_2;
6179
6180 lock_user_struct(VERIFY_WRITE, target_ldt_info, ptr, 1);
6181 if (!target_ldt_info)
6182 return -TARGET_EFAULT;
6183 idx = tswap32(target_ldt_info->entry_number);
6184 if (idx < TARGET_GDT_ENTRY_TLS_MIN ||
6185 idx > TARGET_GDT_ENTRY_TLS_MAX) {
6186 unlock_user_struct(target_ldt_info, ptr, 1);
6187 return -TARGET_EINVAL;
6188 }
6189 lp = (uint32_t *)(gdt_table + idx);
6190 entry_1 = tswap32(lp[0]);
6191 entry_2 = tswap32(lp[1]);
6192
6193 read_exec_only = ((entry_2 >> 9) & 1) ^ 1;
6194 contents = (entry_2 >> 10) & 3;
6195 seg_not_present = ((entry_2 >> 15) & 1) ^ 1;
6196 seg_32bit = (entry_2 >> 22) & 1;
6197 limit_in_pages = (entry_2 >> 23) & 1;
6198 useable = (entry_2 >> 20) & 1;
6199#ifdef TARGET_ABI32
6200 lm = 0;
6201#else
6202 lm = (entry_2 >> 21) & 1;
6203#endif
6204 flags = (seg_32bit << 0) | (contents << 1) |
6205 (read_exec_only << 3) | (limit_in_pages << 4) |
6206 (seg_not_present << 5) | (useable << 6) | (lm << 7);
6207 limit = (entry_1 & 0xffff) | (entry_2 & 0xf0000);
6208 base_addr = (entry_1 >> 16) |
6209 (entry_2 & 0xff000000) |
6210 ((entry_2 & 0xff) << 16);
cbb21eed 6211 target_ldt_info->base_addr = tswapal(base_addr);
8d18e893
FB
6212 target_ldt_info->limit = tswap32(limit);
6213 target_ldt_info->flags = tswap32(flags);
6214 unlock_user_struct(target_ldt_info, ptr, 1);
6215 return 0;
6216}
6217
9d12f79d
LV
6218abi_long do_arch_prctl(CPUX86State *env, int code, abi_ulong addr)
6219{
538fabcb 6220 return -TARGET_ENOSYS;
9d12f79d
LV
6221}
6222#else
2667e71c 6223abi_long do_arch_prctl(CPUX86State *env, int code, abi_ulong addr)
d2fd1af7 6224{
1add8698 6225 abi_long ret = 0;
d2fd1af7
FB
6226 abi_ulong val;
6227 int idx;
1add8698 6228
d2fd1af7
FB
6229 switch(code) {
6230 case TARGET_ARCH_SET_GS:
6231 case TARGET_ARCH_SET_FS:
6232 if (code == TARGET_ARCH_SET_GS)
6233 idx = R_GS;
6234 else
6235 idx = R_FS;
6236 cpu_x86_load_seg(env, idx, 0);
6237 env->segs[idx].base = addr;
6238 break;
6239 case TARGET_ARCH_GET_GS:
6240 case TARGET_ARCH_GET_FS:
6241 if (code == TARGET_ARCH_GET_GS)
6242 idx = R_GS;
6243 else
6244 idx = R_FS;
6245 val = env->segs[idx].base;
6246 if (put_user(val, addr, abi_ulong))
1add8698 6247 ret = -TARGET_EFAULT;
d2fd1af7
FB
6248 break;
6249 default:
6250 ret = -TARGET_EINVAL;
6251 break;
6252 }
1add8698 6253 return ret;
d2fd1af7 6254}
9d12f79d 6255#endif /* defined(TARGET_ABI32 */
2ab83ea7
FB
6256#endif /* defined(TARGET_I386) */
6257
87e9bf23
RH
6258/*
6259 * These constants are generic. Supply any that are missing from the host.
6260 */
6261#ifndef PR_SET_NAME
6262# define PR_SET_NAME 15
6263# define PR_GET_NAME 16
6264#endif
6265#ifndef PR_SET_FP_MODE
6266# define PR_SET_FP_MODE 45
6267# define PR_GET_FP_MODE 46
6268# define PR_FP_MODE_FR (1 << 0)
6269# define PR_FP_MODE_FRE (1 << 1)
6270#endif
6271#ifndef PR_SVE_SET_VL
6272# define PR_SVE_SET_VL 50
6273# define PR_SVE_GET_VL 51
6274# define PR_SVE_VL_LEN_MASK 0xffff
6275# define PR_SVE_VL_INHERIT (1 << 17)
6276#endif
6277#ifndef PR_PAC_RESET_KEYS
6278# define PR_PAC_RESET_KEYS 54
6279# define PR_PAC_APIAKEY (1 << 0)
6280# define PR_PAC_APIBKEY (1 << 1)
6281# define PR_PAC_APDAKEY (1 << 2)
6282# define PR_PAC_APDBKEY (1 << 3)
6283# define PR_PAC_APGAKEY (1 << 4)
6284#endif
6285#ifndef PR_SET_TAGGED_ADDR_CTRL
6286# define PR_SET_TAGGED_ADDR_CTRL 55
6287# define PR_GET_TAGGED_ADDR_CTRL 56
6288# define PR_TAGGED_ADDR_ENABLE (1UL << 0)
6289#endif
6290#ifndef PR_MTE_TCF_SHIFT
6291# define PR_MTE_TCF_SHIFT 1
6292# define PR_MTE_TCF_NONE (0UL << PR_MTE_TCF_SHIFT)
6293# define PR_MTE_TCF_SYNC (1UL << PR_MTE_TCF_SHIFT)
6294# define PR_MTE_TCF_ASYNC (2UL << PR_MTE_TCF_SHIFT)
6295# define PR_MTE_TCF_MASK (3UL << PR_MTE_TCF_SHIFT)
6296# define PR_MTE_TAG_SHIFT 3
6297# define PR_MTE_TAG_MASK (0xffffUL << PR_MTE_TAG_SHIFT)
6298#endif
220717a6
RH
6299#ifndef PR_SET_IO_FLUSHER
6300# define PR_SET_IO_FLUSHER 57
6301# define PR_GET_IO_FLUSHER 58
6302#endif
6303#ifndef PR_SET_SYSCALL_USER_DISPATCH
6304# define PR_SET_SYSCALL_USER_DISPATCH 59
6305#endif
24d87c18
RH
6306#ifndef PR_SME_SET_VL
6307# define PR_SME_SET_VL 63
6308# define PR_SME_GET_VL 64
6309# define PR_SME_VL_LEN_MASK 0xffff
6310# define PR_SME_VL_INHERIT (1 << 17)
6311#endif
87e9bf23
RH
6312
6313#include "target_prctl.h"
6314
6315static abi_long do_prctl_inval0(CPUArchState *env)
6316{
6317 return -TARGET_EINVAL;
6318}
6319
6320static abi_long do_prctl_inval1(CPUArchState *env, abi_long arg2)
6321{
6322 return -TARGET_EINVAL;
6323}
6324
6325#ifndef do_prctl_get_fp_mode
6326#define do_prctl_get_fp_mode do_prctl_inval0
6327#endif
6328#ifndef do_prctl_set_fp_mode
6329#define do_prctl_set_fp_mode do_prctl_inval1
6330#endif
fd72f5d0
RH
6331#ifndef do_prctl_sve_get_vl
6332#define do_prctl_sve_get_vl do_prctl_inval0
87e9bf23 6333#endif
fd72f5d0
RH
6334#ifndef do_prctl_sve_set_vl
6335#define do_prctl_sve_set_vl do_prctl_inval1
87e9bf23
RH
6336#endif
6337#ifndef do_prctl_reset_keys
6338#define do_prctl_reset_keys do_prctl_inval1
6339#endif
6340#ifndef do_prctl_set_tagged_addr_ctrl
6341#define do_prctl_set_tagged_addr_ctrl do_prctl_inval1
6342#endif
6343#ifndef do_prctl_get_tagged_addr_ctrl
6344#define do_prctl_get_tagged_addr_ctrl do_prctl_inval0
6345#endif
6e8dcacd
RH
6346#ifndef do_prctl_get_unalign
6347#define do_prctl_get_unalign do_prctl_inval1
6348#endif
6349#ifndef do_prctl_set_unalign
6350#define do_prctl_set_unalign do_prctl_inval1
6351#endif
24d87c18
RH
6352#ifndef do_prctl_sme_get_vl
6353#define do_prctl_sme_get_vl do_prctl_inval0
6354#endif
6355#ifndef do_prctl_sme_set_vl
6356#define do_prctl_sme_set_vl do_prctl_inval1
6357#endif
87e9bf23
RH
6358
6359static abi_long do_prctl(CPUArchState *env, abi_long option, abi_long arg2,
6360 abi_long arg3, abi_long arg4, abi_long arg5)
6361{
6362 abi_long ret;
6363
6364 switch (option) {
6365 case PR_GET_PDEATHSIG:
6366 {
6367 int deathsig;
6368 ret = get_errno(prctl(PR_GET_PDEATHSIG, &deathsig,
6369 arg3, arg4, arg5));
1edebb36
RH
6370 if (!is_error(ret) &&
6371 put_user_s32(host_to_target_signal(deathsig), arg2)) {
87e9bf23
RH
6372 return -TARGET_EFAULT;
6373 }
6374 return ret;
6375 }
f746c659
RH
6376 case PR_SET_PDEATHSIG:
6377 return get_errno(prctl(PR_SET_PDEATHSIG, target_to_host_signal(arg2),
6378 arg3, arg4, arg5));
87e9bf23
RH
6379 case PR_GET_NAME:
6380 {
6381 void *name = lock_user(VERIFY_WRITE, arg2, 16, 1);
6382 if (!name) {
6383 return -TARGET_EFAULT;
6384 }
6385 ret = get_errno(prctl(PR_GET_NAME, (uintptr_t)name,
6386 arg3, arg4, arg5));
6387 unlock_user(name, arg2, 16);
6388 return ret;
6389 }
6390 case PR_SET_NAME:
6391 {
6392 void *name = lock_user(VERIFY_READ, arg2, 16, 1);
6393 if (!name) {
6394 return -TARGET_EFAULT;
6395 }
6396 ret = get_errno(prctl(PR_SET_NAME, (uintptr_t)name,
6397 arg3, arg4, arg5));
6398 unlock_user(name, arg2, 0);
6399 return ret;
6400 }
6401 case PR_GET_FP_MODE:
6402 return do_prctl_get_fp_mode(env);
6403 case PR_SET_FP_MODE:
6404 return do_prctl_set_fp_mode(env, arg2);
6405 case PR_SVE_GET_VL:
fd72f5d0 6406 return do_prctl_sve_get_vl(env);
87e9bf23 6407 case PR_SVE_SET_VL:
fd72f5d0 6408 return do_prctl_sve_set_vl(env, arg2);
24d87c18
RH
6409 case PR_SME_GET_VL:
6410 return do_prctl_sme_get_vl(env);
6411 case PR_SME_SET_VL:
6412 return do_prctl_sme_set_vl(env, arg2);
87e9bf23
RH
6413 case PR_PAC_RESET_KEYS:
6414 if (arg3 || arg4 || arg5) {
6415 return -TARGET_EINVAL;
6416 }
6417 return do_prctl_reset_keys(env, arg2);
6418 case PR_SET_TAGGED_ADDR_CTRL:
6419 if (arg3 || arg4 || arg5) {
6420 return -TARGET_EINVAL;
6421 }
6422 return do_prctl_set_tagged_addr_ctrl(env, arg2);
6423 case PR_GET_TAGGED_ADDR_CTRL:
6424 if (arg2 || arg3 || arg4 || arg5) {
6425 return -TARGET_EINVAL;
6426 }
6427 return do_prctl_get_tagged_addr_ctrl(env);
220717a6 6428
6e8dcacd
RH
6429 case PR_GET_UNALIGN:
6430 return do_prctl_get_unalign(env, arg2);
6431 case PR_SET_UNALIGN:
6432 return do_prctl_set_unalign(env, arg2);
6433
4f4e5567
RH
6434 case PR_CAP_AMBIENT:
6435 case PR_CAPBSET_READ:
6436 case PR_CAPBSET_DROP:
220717a6
RH
6437 case PR_GET_DUMPABLE:
6438 case PR_SET_DUMPABLE:
6439 case PR_GET_KEEPCAPS:
6440 case PR_SET_KEEPCAPS:
4f4e5567
RH
6441 case PR_GET_SECUREBITS:
6442 case PR_SET_SECUREBITS:
220717a6
RH
6443 case PR_GET_TIMING:
6444 case PR_SET_TIMING:
6445 case PR_GET_TIMERSLACK:
6446 case PR_SET_TIMERSLACK:
6447 case PR_MCE_KILL:
6448 case PR_MCE_KILL_GET:
6449 case PR_GET_NO_NEW_PRIVS:
6450 case PR_SET_NO_NEW_PRIVS:
6451 case PR_GET_IO_FLUSHER:
6452 case PR_SET_IO_FLUSHER:
6453 /* Some prctl options have no pointer arguments and we can pass on. */
6454 return get_errno(prctl(option, arg2, arg3, arg4, arg5));
6455
6456 case PR_GET_CHILD_SUBREAPER:
6457 case PR_SET_CHILD_SUBREAPER:
6458 case PR_GET_SPECULATION_CTRL:
6459 case PR_SET_SPECULATION_CTRL:
6460 case PR_GET_TID_ADDRESS:
6461 /* TODO */
6462 return -TARGET_EINVAL;
6463
6464 case PR_GET_FPEXC:
6465 case PR_SET_FPEXC:
6466 /* Was used for SPE on PowerPC. */
6467 return -TARGET_EINVAL;
6468
6469 case PR_GET_ENDIAN:
6470 case PR_SET_ENDIAN:
6471 case PR_GET_FPEMU:
6472 case PR_SET_FPEMU:
6473 case PR_SET_MM:
87e9bf23
RH
6474 case PR_GET_SECCOMP:
6475 case PR_SET_SECCOMP:
220717a6
RH
6476 case PR_SET_SYSCALL_USER_DISPATCH:
6477 case PR_GET_THP_DISABLE:
6478 case PR_SET_THP_DISABLE:
6479 case PR_GET_TSC:
6480 case PR_SET_TSC:
220717a6 6481 /* Disable to prevent the target disabling stuff we need. */
87e9bf23 6482 return -TARGET_EINVAL;
220717a6 6483
87e9bf23 6484 default:
220717a6
RH
6485 qemu_log_mask(LOG_UNIMP, "Unsupported prctl: " TARGET_ABI_FMT_ld "\n",
6486 option);
6487 return -TARGET_EINVAL;
87e9bf23
RH
6488 }
6489}
6490
05098a93 6491#define NEW_STACK_SIZE 0x40000
d865bab5 6492
d865bab5
PB
6493
6494static pthread_mutex_t clone_lock = PTHREAD_MUTEX_INITIALIZER;
6495typedef struct {
9349b4f9 6496 CPUArchState *env;
d865bab5
PB
6497 pthread_mutex_t mutex;
6498 pthread_cond_t cond;
6499 pthread_t thread;
6500 uint32_t tid;
6501 abi_ulong child_tidptr;
6502 abi_ulong parent_tidptr;
6503 sigset_t sigmask;
6504} new_thread_info;
6505
6506static void *clone_func(void *arg)
6507{
6508 new_thread_info *info = arg;
9349b4f9 6509 CPUArchState *env;
0d34282f 6510 CPUState *cpu;
edf8e2af 6511 TaskState *ts;
d865bab5 6512
70903763 6513 rcu_register_thread();
3468b59e 6514 tcg_register_thread();
d865bab5 6515 env = info->env;
29a0af61 6516 cpu = env_cpu(env);
a2247f8e 6517 thread_cpu = cpu;
0429a971 6518 ts = (TaskState *)cpu->opaque;
71ba74f6 6519 info->tid = sys_gettid();
edf8e2af 6520 task_settid(ts);
d865bab5
PB
6521 if (info->child_tidptr)
6522 put_user_u32(info->tid, info->child_tidptr);
6523 if (info->parent_tidptr)
6524 put_user_u32(info->tid, info->parent_tidptr);
5ebdd774 6525 qemu_guest_random_seed_thread_part2(cpu->random_seed);
d865bab5
PB
6526 /* Enable signals. */
6527 sigprocmask(SIG_SETMASK, &info->sigmask, NULL);
6528 /* Signal to the parent that we're ready. */
6529 pthread_mutex_lock(&info->mutex);
6530 pthread_cond_broadcast(&info->cond);
6531 pthread_mutex_unlock(&info->mutex);
a4dd3d51 6532 /* Wait until the parent has finished initializing the tls state. */
d865bab5
PB
6533 pthread_mutex_lock(&clone_lock);
6534 pthread_mutex_unlock(&clone_lock);
6535 cpu_loop(env);
6536 /* never exits */
6537 return NULL;
6538}
1b6b029e 6539
0da46a6e
TS
6540/* do_fork() Must return host values and target errnos (unlike most
6541 do_*() functions). */
9349b4f9 6542static int do_fork(CPUArchState *env, unsigned int flags, abi_ulong newsp,
d865bab5
PB
6543 abi_ulong parent_tidptr, target_ulong newtls,
6544 abi_ulong child_tidptr)
1b6b029e 6545{
29a0af61 6546 CPUState *cpu = env_cpu(env);
1b6b029e 6547 int ret;
5cd4393b 6548 TaskState *ts;
0429a971 6549 CPUState *new_cpu;
9349b4f9 6550 CPUArchState *new_env;
d865bab5 6551 sigset_t sigmask;
3b46e624 6552
5ea2fc84
PM
6553 flags &= ~CLONE_IGNORED_FLAGS;
6554
436d124b
AZ
6555 /* Emulate vfork() with fork() */
6556 if (flags & CLONE_VFORK)
6557 flags &= ~(CLONE_VFORK | CLONE_VM);
6558
1b6b029e 6559 if (flags & CLONE_VM) {
0429a971 6560 TaskState *parent_ts = (TaskState *)cpu->opaque;
d865bab5
PB
6561 new_thread_info info;
6562 pthread_attr_t attr;
24cb36a6 6563
5ea2fc84
PM
6564 if (((flags & CLONE_THREAD_FLAGS) != CLONE_THREAD_FLAGS) ||
6565 (flags & CLONE_INVALID_THREAD_FLAGS)) {
6566 return -TARGET_EINVAL;
6567 }
6568
c78d65e8 6569 ts = g_new0(TaskState, 1);
624f7979 6570 init_task_state(ts);
73a988d9
MF
6571
6572 /* Grab a mutex so that thread setup appears atomic. */
6573 pthread_mutex_lock(&clone_lock);
6574
6cc9d67c
RH
6575 /*
6576 * If this is our first additional thread, we need to ensure we
6577 * generate code for parallel execution and flush old translations.
6578 * Do this now so that the copy gets CF_PARALLEL too.
6579 */
6580 if (!(cpu->tcg_cflags & CF_PARALLEL)) {
6581 cpu->tcg_cflags |= CF_PARALLEL;
6582 tb_flush(cpu);
6583 }
6584
1b6b029e 6585 /* we create a new CPU instance. */
c5be9f08 6586 new_env = cpu_copy(env);
6e68e076 6587 /* Init regs that differ from the parent. */
608999d1 6588 cpu_clone_regs_child(new_env, newsp, flags);
07a6ecf4 6589 cpu_clone_regs_parent(env, flags);
29a0af61 6590 new_cpu = env_cpu(new_env);
0429a971 6591 new_cpu->opaque = ts;
edf8e2af
MW
6592 ts->bprm = parent_ts->bprm;
6593 ts->info = parent_ts->info;
3d3efba0 6594 ts->signal_mask = parent_ts->signal_mask;
d865bab5 6595
7cfbd386 6596 if (flags & CLONE_CHILD_CLEARTID) {
c2764719
PB
6597 ts->child_tidptr = child_tidptr;
6598 }
6599
7cfbd386 6600 if (flags & CLONE_SETTLS) {
d865bab5 6601 cpu_set_tls (new_env, newtls);
7cfbd386 6602 }
d865bab5 6603
d865bab5
PB
6604 memset(&info, 0, sizeof(info));
6605 pthread_mutex_init(&info.mutex, NULL);
6606 pthread_mutex_lock(&info.mutex);
6607 pthread_cond_init(&info.cond, NULL);
6608 info.env = new_env;
7cfbd386 6609 if (flags & CLONE_CHILD_SETTID) {
d865bab5 6610 info.child_tidptr = child_tidptr;
7cfbd386
PM
6611 }
6612 if (flags & CLONE_PARENT_SETTID) {
d865bab5 6613 info.parent_tidptr = parent_tidptr;
7cfbd386 6614 }
d865bab5
PB
6615
6616 ret = pthread_attr_init(&attr);
48e15fc2
NF
6617 ret = pthread_attr_setstacksize(&attr, NEW_STACK_SIZE);
6618 ret = pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_DETACHED);
d865bab5
PB
6619 /* It is not safe to deliver signals until the child has finished
6620 initializing, so temporarily block all signals. */
6621 sigfillset(&sigmask);
6622 sigprocmask(SIG_BLOCK, &sigmask, &info.sigmask);
5ebdd774 6623 cpu->random_seed = qemu_guest_random_seed_thread_part1();
d865bab5
PB
6624
6625 ret = pthread_create(&info.thread, &attr, clone_func, &info);
c2764719 6626 /* TODO: Free new CPU state if thread creation failed. */
d865bab5
PB
6627
6628 sigprocmask(SIG_SETMASK, &info.sigmask, NULL);
6629 pthread_attr_destroy(&attr);
6630 if (ret == 0) {
6631 /* Wait for the child to initialize. */
6632 pthread_cond_wait(&info.cond, &info.mutex);
6633 ret = info.tid;
d865bab5
PB
6634 } else {
6635 ret = -1;
6636 }
6637 pthread_mutex_unlock(&info.mutex);
6638 pthread_cond_destroy(&info.cond);
6639 pthread_mutex_destroy(&info.mutex);
6640 pthread_mutex_unlock(&clone_lock);
1b6b029e
FB
6641 } else {
6642 /* if no CLONE_VM, we consider it is a fork */
5ea2fc84
PM
6643 if (flags & CLONE_INVALID_FORK_FLAGS) {
6644 return -TARGET_EINVAL;
6645 }
6646
6647 /* We can't support custom termination signals */
6648 if ((flags & CSIGNAL) != TARGET_SIGCHLD) {
93b4eff8
TB
6649 return -TARGET_EINVAL;
6650 }
7d92d34e 6651
895ce8bb
HD
6652#if !defined(__NR_pidfd_open) || !defined(TARGET_NR_pidfd_open)
6653 if (flags & CLONE_PIDFD) {
6654 return -TARGET_EINVAL;
6655 }
6656#endif
6657
6658 /* Can not allow CLONE_PIDFD with CLONE_PARENT_SETTID */
6659 if ((flags & CLONE_PIDFD) && (flags & CLONE_PARENT_SETTID)) {
6660 return -TARGET_EINVAL;
6661 }
6662
7d92d34e 6663 if (block_signals()) {
af254a27 6664 return -QEMU_ERESTARTSYS;
7d92d34e
TB
6665 }
6666
d865bab5 6667 fork_start();
1b6b029e 6668 ret = fork();
d865bab5 6669 if (ret == 0) {
2b1319c8 6670 /* Child Process. */
608999d1 6671 cpu_clone_regs_child(env, newsp, flags);
d865bab5 6672 fork_end(1);
2b1319c8
AJ
6673 /* There is a race condition here. The parent process could
6674 theoretically read the TID in the child process before the child
6675 tid is set. This would require using either ptrace
6676 (not implemented) or having *_tidptr to point at a shared memory
6677 mapping. We can't repeat the spinlock hack used above because
6678 the child process gets its own copy of the lock. */
d865bab5 6679 if (flags & CLONE_CHILD_SETTID)
71ba74f6 6680 put_user_u32(sys_gettid(), child_tidptr);
d865bab5 6681 if (flags & CLONE_PARENT_SETTID)
71ba74f6 6682 put_user_u32(sys_gettid(), parent_tidptr);
0429a971 6683 ts = (TaskState *)cpu->opaque;
d865bab5
PB
6684 if (flags & CLONE_SETTLS)
6685 cpu_set_tls (env, newtls);
c2764719
PB
6686 if (flags & CLONE_CHILD_CLEARTID)
6687 ts->child_tidptr = child_tidptr;
d865bab5 6688 } else {
07a6ecf4 6689 cpu_clone_regs_parent(env, flags);
895ce8bb
HD
6690 if (flags & CLONE_PIDFD) {
6691 int pid_fd = 0;
6692#if defined(__NR_pidfd_open) && defined(TARGET_NR_pidfd_open)
6693 int pid_child = ret;
6694 pid_fd = pidfd_open(pid_child, 0);
6695 if (pid_fd >= 0) {
6696 fcntl(pid_fd, F_SETFD, fcntl(pid_fd, F_GETFL)
6697 | FD_CLOEXEC);
6698 } else {
6699 pid_fd = 0;
6700 }
6701#endif
6702 put_user_u32(pid_fd, parent_tidptr);
6703 }
d865bab5
PB
6704 fork_end(0);
6705 }
7de0816f 6706 g_assert(!cpu_in_exclusive_context(cpu));
1b6b029e
FB
6707 }
6708 return ret;
6709}
6710
5f106811
APR
6711/* warning : doesn't handle linux specific flags... */
6712static int target_to_host_fcntl_cmd(int cmd)
6713{
4a545761
SB
6714 int ret;
6715
5f106811 6716 switch(cmd) {
4a545761
SB
6717 case TARGET_F_DUPFD:
6718 case TARGET_F_GETFD:
6719 case TARGET_F_SETFD:
6720 case TARGET_F_GETFL:
6721 case TARGET_F_SETFL:
2d92c682
AS
6722 case TARGET_F_OFD_GETLK:
6723 case TARGET_F_OFD_SETLK:
6724 case TARGET_F_OFD_SETLKW:
4a545761
SB
6725 ret = cmd;
6726 break;
6727 case TARGET_F_GETLK:
6728 ret = F_GETLK64;
6729 break;
6730 case TARGET_F_SETLK:
6731 ret = F_SETLK64;
6732 break;
6733 case TARGET_F_SETLKW:
6734 ret = F_SETLKW64;
6735 break;
6736 case TARGET_F_GETOWN:
6737 ret = F_GETOWN;
6738 break;
6739 case TARGET_F_SETOWN:
6740 ret = F_SETOWN;
6741 break;
6742 case TARGET_F_GETSIG:
6743 ret = F_GETSIG;
6744 break;
6745 case TARGET_F_SETSIG:
6746 ret = F_SETSIG;
6747 break;
5f106811 6748#if TARGET_ABI_BITS == 32
4a545761
SB
6749 case TARGET_F_GETLK64:
6750 ret = F_GETLK64;
6751 break;
6752 case TARGET_F_SETLK64:
6753 ret = F_SETLK64;
6754 break;
6755 case TARGET_F_SETLKW64:
6756 ret = F_SETLKW64;
6757 break;
5f106811 6758#endif
4a545761
SB
6759 case TARGET_F_SETLEASE:
6760 ret = F_SETLEASE;
6761 break;
6762 case TARGET_F_GETLEASE:
6763 ret = F_GETLEASE;
6764 break;
fbd5de9b 6765#ifdef F_DUPFD_CLOEXEC
4a545761
SB
6766 case TARGET_F_DUPFD_CLOEXEC:
6767 ret = F_DUPFD_CLOEXEC;
6768 break;
fbd5de9b 6769#endif
4a545761
SB
6770 case TARGET_F_NOTIFY:
6771 ret = F_NOTIFY;
6772 break;
8d5d3004 6773#ifdef F_GETOWN_EX
4a545761
SB
6774 case TARGET_F_GETOWN_EX:
6775 ret = F_GETOWN_EX;
6776 break;
8d5d3004
AS
6777#endif
6778#ifdef F_SETOWN_EX
4a545761
SB
6779 case TARGET_F_SETOWN_EX:
6780 ret = F_SETOWN_EX;
6781 break;
8d5d3004 6782#endif
ddf31aa8 6783#ifdef F_SETPIPE_SZ
4a545761
SB
6784 case TARGET_F_SETPIPE_SZ:
6785 ret = F_SETPIPE_SZ;
6786 break;
6787 case TARGET_F_GETPIPE_SZ:
6788 ret = F_GETPIPE_SZ;
6789 break;
2bb963ff
SCW
6790#endif
6791#ifdef F_ADD_SEALS
6792 case TARGET_F_ADD_SEALS:
6793 ret = F_ADD_SEALS;
6794 break;
6795 case TARGET_F_GET_SEALS:
6796 ret = F_GET_SEALS;
6797 break;
ddf31aa8 6798#endif
4a545761
SB
6799 default:
6800 ret = -TARGET_EINVAL;
6801 break;
6802 }
6803
6804#if defined(__powerpc64__)
6805 /* On PPC64, glibc headers has the F_*LK* defined to 12, 13 and 14 and
6806 * is not supported by kernel. The glibc fcntl call actually adjusts
6807 * them to 5, 6 and 7 before making the syscall(). Since we make the
6808 * syscall directly, adjust to what is supported by the kernel.
6809 */
6810 if (ret >= F_GETLK64 && ret <= F_SETLKW64) {
6811 ret -= F_GETLK64 - 5;
5f106811 6812 }
4a545761
SB
6813#endif
6814
6815 return ret;
5f106811
APR
6816}
6817
ae68ad9f
LV
6818#define FLOCK_TRANSTBL \
6819 switch (type) { \
6820 TRANSTBL_CONVERT(F_RDLCK); \
6821 TRANSTBL_CONVERT(F_WRLCK); \
6822 TRANSTBL_CONVERT(F_UNLCK); \
ae68ad9f
LV
6823 }
6824
6825static int target_to_host_flock(int type)
6826{
6827#define TRANSTBL_CONVERT(a) case TARGET_##a: return a
6828 FLOCK_TRANSTBL
6829#undef TRANSTBL_CONVERT
6830 return -TARGET_EINVAL;
6831}
6832
6833static int host_to_target_flock(int type)
6834{
6835#define TRANSTBL_CONVERT(a) case a: return TARGET_##a
6836 FLOCK_TRANSTBL
6837#undef TRANSTBL_CONVERT
6838 /* if we don't know how to convert the value coming
6839 * from the host we copy to the target field as-is
6840 */
6841 return type;
6842}
2ba7f730 6843
213d3e9e
PM
6844static inline abi_long copy_from_user_flock(struct flock64 *fl,
6845 abi_ulong target_flock_addr)
7775e9ec 6846{
53a5960a 6847 struct target_flock *target_fl;
ae68ad9f 6848 int l_type;
213d3e9e
PM
6849
6850 if (!lock_user_struct(VERIFY_READ, target_fl, target_flock_addr, 1)) {
6851 return -TARGET_EFAULT;
6852 }
6853
6854 __get_user(l_type, &target_fl->l_type);
ae68ad9f
LV
6855 l_type = target_to_host_flock(l_type);
6856 if (l_type < 0) {
6857 return l_type;
6858 }
6859 fl->l_type = l_type;
213d3e9e
PM
6860 __get_user(fl->l_whence, &target_fl->l_whence);
6861 __get_user(fl->l_start, &target_fl->l_start);
6862 __get_user(fl->l_len, &target_fl->l_len);
6863 __get_user(fl->l_pid, &target_fl->l_pid);
6864 unlock_user_struct(target_fl, target_flock_addr, 0);
6865 return 0;
6866}
6867
6868static inline abi_long copy_to_user_flock(abi_ulong target_flock_addr,
6869 const struct flock64 *fl)
6870{
6871 struct target_flock *target_fl;
6872 short l_type;
6873
6874 if (!lock_user_struct(VERIFY_WRITE, target_fl, target_flock_addr, 0)) {
6875 return -TARGET_EFAULT;
6876 }
6877
ae68ad9f 6878 l_type = host_to_target_flock(fl->l_type);
213d3e9e
PM
6879 __put_user(l_type, &target_fl->l_type);
6880 __put_user(fl->l_whence, &target_fl->l_whence);
6881 __put_user(fl->l_start, &target_fl->l_start);
6882 __put_user(fl->l_len, &target_fl->l_len);
6883 __put_user(fl->l_pid, &target_fl->l_pid);
6884 unlock_user_struct(target_fl, target_flock_addr, 1);
6885 return 0;
6886}
6887
6888typedef abi_long from_flock64_fn(struct flock64 *fl, abi_ulong target_addr);
6889typedef abi_long to_flock64_fn(abi_ulong target_addr, const struct flock64 *fl);
6890
6891#if defined(TARGET_ARM) && TARGET_ABI_BITS == 32
ffe81d43
RH
6892struct target_oabi_flock64 {
6893 abi_short l_type;
6894 abi_short l_whence;
6895 abi_llong l_start;
6896 abi_llong l_len;
6897 abi_int l_pid;
6898} QEMU_PACKED;
6899
7f254c5c 6900static inline abi_long copy_from_user_oabi_flock64(struct flock64 *fl,
213d3e9e
PM
6901 abi_ulong target_flock_addr)
6902{
7f254c5c 6903 struct target_oabi_flock64 *target_fl;
ae68ad9f 6904 int l_type;
213d3e9e
PM
6905
6906 if (!lock_user_struct(VERIFY_READ, target_fl, target_flock_addr, 1)) {
6907 return -TARGET_EFAULT;
6908 }
6909
6910 __get_user(l_type, &target_fl->l_type);
ae68ad9f
LV
6911 l_type = target_to_host_flock(l_type);
6912 if (l_type < 0) {
6913 return l_type;
6914 }
6915 fl->l_type = l_type;
213d3e9e
PM
6916 __get_user(fl->l_whence, &target_fl->l_whence);
6917 __get_user(fl->l_start, &target_fl->l_start);
6918 __get_user(fl->l_len, &target_fl->l_len);
6919 __get_user(fl->l_pid, &target_fl->l_pid);
6920 unlock_user_struct(target_fl, target_flock_addr, 0);
6921 return 0;
6922}
6923
7f254c5c 6924static inline abi_long copy_to_user_oabi_flock64(abi_ulong target_flock_addr,
213d3e9e
PM
6925 const struct flock64 *fl)
6926{
7f254c5c 6927 struct target_oabi_flock64 *target_fl;
213d3e9e
PM
6928 short l_type;
6929
6930 if (!lock_user_struct(VERIFY_WRITE, target_fl, target_flock_addr, 0)) {
6931 return -TARGET_EFAULT;
6932 }
6933
ae68ad9f 6934 l_type = host_to_target_flock(fl->l_type);
213d3e9e
PM
6935 __put_user(l_type, &target_fl->l_type);
6936 __put_user(fl->l_whence, &target_fl->l_whence);
6937 __put_user(fl->l_start, &target_fl->l_start);
6938 __put_user(fl->l_len, &target_fl->l_len);
6939 __put_user(fl->l_pid, &target_fl->l_pid);
6940 unlock_user_struct(target_fl, target_flock_addr, 1);
6941 return 0;
6942}
6943#endif
6944
6945static inline abi_long copy_from_user_flock64(struct flock64 *fl,
6946 abi_ulong target_flock_addr)
6947{
6948 struct target_flock64 *target_fl;
ae68ad9f 6949 int l_type;
213d3e9e
PM
6950
6951 if (!lock_user_struct(VERIFY_READ, target_fl, target_flock_addr, 1)) {
6952 return -TARGET_EFAULT;
6953 }
6954
6955 __get_user(l_type, &target_fl->l_type);
ae68ad9f
LV
6956 l_type = target_to_host_flock(l_type);
6957 if (l_type < 0) {
6958 return l_type;
6959 }
6960 fl->l_type = l_type;
213d3e9e
PM
6961 __get_user(fl->l_whence, &target_fl->l_whence);
6962 __get_user(fl->l_start, &target_fl->l_start);
6963 __get_user(fl->l_len, &target_fl->l_len);
6964 __get_user(fl->l_pid, &target_fl->l_pid);
6965 unlock_user_struct(target_fl, target_flock_addr, 0);
6966 return 0;
6967}
6968
6969static inline abi_long copy_to_user_flock64(abi_ulong target_flock_addr,
6970 const struct flock64 *fl)
6971{
6972 struct target_flock64 *target_fl;
6973 short l_type;
6974
6975 if (!lock_user_struct(VERIFY_WRITE, target_fl, target_flock_addr, 0)) {
6976 return -TARGET_EFAULT;
6977 }
6978
ae68ad9f 6979 l_type = host_to_target_flock(fl->l_type);
213d3e9e
PM
6980 __put_user(l_type, &target_fl->l_type);
6981 __put_user(fl->l_whence, &target_fl->l_whence);
6982 __put_user(fl->l_start, &target_fl->l_start);
6983 __put_user(fl->l_len, &target_fl->l_len);
6984 __put_user(fl->l_pid, &target_fl->l_pid);
6985 unlock_user_struct(target_fl, target_flock_addr, 1);
6986 return 0;
6987}
6988
6989static abi_long do_fcntl(int fd, int cmd, abi_ulong arg)
6990{
43f238d7 6991 struct flock64 fl64;
8d5d3004
AS
6992#ifdef F_GETOWN_EX
6993 struct f_owner_ex fox;
6994 struct target_f_owner_ex *target_fox;
6995#endif
992f48a0 6996 abi_long ret;
5f106811
APR
6997 int host_cmd = target_to_host_fcntl_cmd(cmd);
6998
6999 if (host_cmd == -TARGET_EINVAL)
7000 return host_cmd;
53a5960a 7001
7775e9ec
FB
7002 switch(cmd) {
7003 case TARGET_F_GETLK:
213d3e9e
PM
7004 ret = copy_from_user_flock(&fl64, arg);
7005 if (ret) {
7006 return ret;
7007 }
435da5e7 7008 ret = get_errno(safe_fcntl(fd, host_cmd, &fl64));
7775e9ec 7009 if (ret == 0) {
213d3e9e 7010 ret = copy_to_user_flock(arg, &fl64);
7775e9ec
FB
7011 }
7012 break;
3b46e624 7013
7775e9ec
FB
7014 case TARGET_F_SETLK:
7015 case TARGET_F_SETLKW:
213d3e9e
PM
7016 ret = copy_from_user_flock(&fl64, arg);
7017 if (ret) {
7018 return ret;
7019 }
435da5e7 7020 ret = get_errno(safe_fcntl(fd, host_cmd, &fl64));
7775e9ec 7021 break;
3b46e624 7022
7775e9ec 7023 case TARGET_F_GETLK64:
2d92c682 7024 case TARGET_F_OFD_GETLK:
213d3e9e
PM
7025 ret = copy_from_user_flock64(&fl64, arg);
7026 if (ret) {
7027 return ret;
7028 }
435da5e7 7029 ret = get_errno(safe_fcntl(fd, host_cmd, &fl64));
43f238d7 7030 if (ret == 0) {
213d3e9e 7031 ret = copy_to_user_flock64(arg, &fl64);
43f238d7 7032 }
9ee1fa2c 7033 break;
7775e9ec
FB
7034 case TARGET_F_SETLK64:
7035 case TARGET_F_SETLKW64:
2d92c682
AS
7036 case TARGET_F_OFD_SETLK:
7037 case TARGET_F_OFD_SETLKW:
213d3e9e
PM
7038 ret = copy_from_user_flock64(&fl64, arg);
7039 if (ret) {
7040 return ret;
7041 }
435da5e7 7042 ret = get_errno(safe_fcntl(fd, host_cmd, &fl64));
7775e9ec
FB
7043 break;
7044
5f106811 7045 case TARGET_F_GETFL:
435da5e7 7046 ret = get_errno(safe_fcntl(fd, host_cmd, arg));
9ee1fa2c
FB
7047 if (ret >= 0) {
7048 ret = host_to_target_bitmask(ret, fcntl_flags_tbl);
e0ddf8ea
HD
7049 /* tell 32-bit guests it uses largefile on 64-bit hosts: */
7050 if (O_LARGEFILE == 0 && HOST_LONG_BITS == 64) {
7051 ret |= TARGET_O_LARGEFILE;
7052 }
9ee1fa2c 7053 }
ffa65c3b
FB
7054 break;
7055
5f106811 7056 case TARGET_F_SETFL:
435da5e7
PM
7057 ret = get_errno(safe_fcntl(fd, host_cmd,
7058 target_to_host_bitmask(arg,
7059 fcntl_flags_tbl)));
5f106811
APR
7060 break;
7061
8d5d3004
AS
7062#ifdef F_GETOWN_EX
7063 case TARGET_F_GETOWN_EX:
435da5e7 7064 ret = get_errno(safe_fcntl(fd, host_cmd, &fox));
8d5d3004
AS
7065 if (ret >= 0) {
7066 if (!lock_user_struct(VERIFY_WRITE, target_fox, arg, 0))
7067 return -TARGET_EFAULT;
7068 target_fox->type = tswap32(fox.type);
7069 target_fox->pid = tswap32(fox.pid);
7070 unlock_user_struct(target_fox, arg, 1);
7071 }
7072 break;
7073#endif
7074
7075#ifdef F_SETOWN_EX
7076 case TARGET_F_SETOWN_EX:
7077 if (!lock_user_struct(VERIFY_READ, target_fox, arg, 1))
7078 return -TARGET_EFAULT;
7079 fox.type = tswap32(target_fox->type);
7080 fox.pid = tswap32(target_fox->pid);
7081 unlock_user_struct(target_fox, arg, 0);
435da5e7 7082 ret = get_errno(safe_fcntl(fd, host_cmd, &fox));
8d5d3004
AS
7083 break;
7084#endif
7085
5f106811 7086 case TARGET_F_SETSIG:
a7b4c9b1
TB
7087 ret = get_errno(safe_fcntl(fd, host_cmd, target_to_host_signal(arg)));
7088 break;
7089
5f106811 7090 case TARGET_F_GETSIG:
a7b4c9b1
TB
7091 ret = host_to_target_signal(get_errno(safe_fcntl(fd, host_cmd, arg)));
7092 break;
7093
7094 case TARGET_F_SETOWN:
7095 case TARGET_F_GETOWN:
7e22e546
UH
7096 case TARGET_F_SETLEASE:
7097 case TARGET_F_GETLEASE:
7e3b92ec
PM
7098 case TARGET_F_SETPIPE_SZ:
7099 case TARGET_F_GETPIPE_SZ:
2bb963ff
SCW
7100 case TARGET_F_ADD_SEALS:
7101 case TARGET_F_GET_SEALS:
435da5e7 7102 ret = get_errno(safe_fcntl(fd, host_cmd, arg));
ffa65c3b
FB
7103 break;
7104
7775e9ec 7105 default:
435da5e7 7106 ret = get_errno(safe_fcntl(fd, cmd, arg));
7775e9ec
FB
7107 break;
7108 }
7109 return ret;
7110}
7111
67867308 7112#ifdef USE_UID16
7775e9ec 7113
67867308
FB
7114static inline int high2lowuid(int uid)
7115{
7116 if (uid > 65535)
7117 return 65534;
7118 else
7119 return uid;
7120}
7121
7122static inline int high2lowgid(int gid)
7123{
7124 if (gid > 65535)
7125 return 65534;
7126 else
7127 return gid;
7128}
7129
7130static inline int low2highuid(int uid)
7131{
7132 if ((int16_t)uid == -1)
7133 return -1;
7134 else
7135 return uid;
7136}
7137
7138static inline int low2highgid(int gid)
7139{
7140 if ((int16_t)gid == -1)
7141 return -1;
7142 else
7143 return gid;
7144}
0c866a7e
RV
7145static inline int tswapid(int id)
7146{
7147 return tswap16(id);
7148}
76ca310a
PM
7149
7150#define put_user_id(x, gaddr) put_user_u16(x, gaddr)
7151
0c866a7e
RV
7152#else /* !USE_UID16 */
7153static inline int high2lowuid(int uid)
7154{
7155 return uid;
7156}
7157static inline int high2lowgid(int gid)
7158{
7159 return gid;
7160}
7161static inline int low2highuid(int uid)
7162{
7163 return uid;
7164}
7165static inline int low2highgid(int gid)
7166{
7167 return gid;
7168}
7169static inline int tswapid(int id)
7170{
7171 return tswap32(id);
7172}
76ca310a
PM
7173
7174#define put_user_id(x, gaddr) put_user_u32(x, gaddr)
7175
67867308 7176#endif /* USE_UID16 */
1b6b029e 7177
fd6f7798
PM
7178/* We must do direct syscalls for setting UID/GID, because we want to
7179 * implement the Linux system call semantics of "change only for this thread",
7180 * not the libc/POSIX semantics of "change for all threads in process".
7181 * (See http://ewontfix.com/17/ for more details.)
7182 * We use the 32-bit version of the syscalls if present; if it is not
7183 * then either the host architecture supports 32-bit UIDs natively with
7184 * the standard syscall, or the 16-bit UID is the best we can do.
7185 */
7186#ifdef __NR_setuid32
7187#define __NR_sys_setuid __NR_setuid32
7188#else
7189#define __NR_sys_setuid __NR_setuid
7190#endif
7191#ifdef __NR_setgid32
7192#define __NR_sys_setgid __NR_setgid32
7193#else
7194#define __NR_sys_setgid __NR_setgid
7195#endif
7196#ifdef __NR_setresuid32
7197#define __NR_sys_setresuid __NR_setresuid32
7198#else
7199#define __NR_sys_setresuid __NR_setresuid
7200#endif
7201#ifdef __NR_setresgid32
7202#define __NR_sys_setresgid __NR_setresgid32
7203#else
7204#define __NR_sys_setresgid __NR_setresgid
7205#endif
7206
7207_syscall1(int, sys_setuid, uid_t, uid)
7208_syscall1(int, sys_setgid, gid_t, gid)
7209_syscall3(int, sys_setresuid, uid_t, ruid, uid_t, euid, uid_t, suid)
7210_syscall3(int, sys_setresgid, gid_t, rgid, gid_t, egid, gid_t, sgid)
7211
31e31b8a
FB
7212void syscall_init(void)
7213{
2ab83ea7
FB
7214 IOCTLEntry *ie;
7215 const argtype *arg_type;
7216 int size;
7217
8be656b8
AG
7218 thunk_init(STRUCT_MAX);
7219
001faf32 7220#define STRUCT(name, ...) thunk_register_struct(STRUCT_ ## name, #name, struct_ ## name ## _def);
5fafdf24 7221#define STRUCT_SPECIAL(name) thunk_register_struct_direct(STRUCT_ ## name, #name, &struct_ ## name ## _def);
31e31b8a
FB
7222#include "syscall_types.h"
7223#undef STRUCT
7224#undef STRUCT_SPECIAL
2ab83ea7
FB
7225
7226 /* we patch the ioctl size if necessary. We rely on the fact that
7227 no ioctl has all the bits at '1' in the size field */
7228 ie = ioctl_entries;
7229 while (ie->target_cmd != 0) {
7230 if (((ie->target_cmd >> TARGET_IOC_SIZESHIFT) & TARGET_IOC_SIZEMASK) ==
7231 TARGET_IOC_SIZEMASK) {
7232 arg_type = ie->arg_type;
7233 if (arg_type[0] != TYPE_PTR) {
5fafdf24 7234 fprintf(stderr, "cannot patch size for ioctl 0x%x\n",
2ab83ea7
FB
7235 ie->target_cmd);
7236 exit(1);
7237 }
7238 arg_type++;
7239 size = thunk_type_size(arg_type, 0);
5fafdf24 7240 ie->target_cmd = (ie->target_cmd &
2ab83ea7
FB
7241 ~(TARGET_IOC_SIZEMASK << TARGET_IOC_SIZESHIFT)) |
7242 (size << TARGET_IOC_SIZESHIFT);
7243 }
b92c47c1 7244
2ab83ea7 7245 /* automatic consistency check if same arch */
872ea0c0
AZ
7246#if (defined(__i386__) && defined(TARGET_I386) && defined(TARGET_ABI32)) || \
7247 (defined(__x86_64__) && defined(TARGET_X86_64))
7248 if (unlikely(ie->target_cmd != ie->host_cmd)) {
7249 fprintf(stderr, "ERROR: ioctl(%s): target=0x%x host=0x%x\n",
7250 ie->name, ie->target_cmd, ie->host_cmd);
2ab83ea7
FB
7251 }
7252#endif
7253 ie++;
7254 }
31e31b8a 7255}
c573ff67 7256
ce4defa0 7257#ifdef TARGET_NR_truncate64
a0939b89 7258static inline abi_long target_truncate64(CPUArchState *cpu_env, const char *arg1,
992f48a0
BS
7259 abi_long arg2,
7260 abi_long arg3,
7261 abi_long arg4)
ce4defa0 7262{
8bf8e9df 7263 if (regpairs_aligned(cpu_env, TARGET_NR_truncate64)) {
ce4defa0
PB
7264 arg2 = arg3;
7265 arg3 = arg4;
48e515d4 7266 }
ce4defa0
PB
7267 return get_errno(truncate64(arg1, target_offset64(arg2, arg3)));
7268}
7269#endif
7270
7271#ifdef TARGET_NR_ftruncate64
a0939b89 7272static inline abi_long target_ftruncate64(CPUArchState *cpu_env, abi_long arg1,
992f48a0
BS
7273 abi_long arg2,
7274 abi_long arg3,
7275 abi_long arg4)
ce4defa0 7276{
8bf8e9df 7277 if (regpairs_aligned(cpu_env, TARGET_NR_ftruncate64)) {
ce4defa0
PB
7278 arg2 = arg3;
7279 arg3 = arg4;
48e515d4 7280 }
ce4defa0
PB
7281 return get_errno(ftruncate64(arg1, target_offset64(arg2, arg3)));
7282}
7283#endif
7284
859e8a89
AF
7285#if defined(TARGET_NR_timer_settime) || \
7286 (defined(TARGET_NR_timerfd_settime) && defined(CONFIG_TIMERFD))
2c86c90f 7287static inline abi_long target_to_host_itimerspec(struct itimerspec *host_its,
f4f1e10a
ECL
7288 abi_ulong target_addr)
7289{
2c86c90f
FB
7290 if (target_to_host_timespec(&host_its->it_interval, target_addr +
7291 offsetof(struct target_itimerspec,
7292 it_interval)) ||
7293 target_to_host_timespec(&host_its->it_value, target_addr +
7294 offsetof(struct target_itimerspec,
7295 it_value))) {
f4f1e10a
ECL
7296 return -TARGET_EFAULT;
7297 }
7298
f4f1e10a
ECL
7299 return 0;
7300}
859e8a89 7301#endif
f4f1e10a 7302
828cb3a1
FB
7303#if defined(TARGET_NR_timer_settime64) || \
7304 (defined(TARGET_NR_timerfd_settime64) && defined(CONFIG_TIMERFD))
7305static inline abi_long target_to_host_itimerspec64(struct itimerspec *host_its,
7306 abi_ulong target_addr)
7307{
7308 if (target_to_host_timespec64(&host_its->it_interval, target_addr +
7309 offsetof(struct target__kernel_itimerspec,
7310 it_interval)) ||
7311 target_to_host_timespec64(&host_its->it_value, target_addr +
7312 offsetof(struct target__kernel_itimerspec,
7313 it_value))) {
7314 return -TARGET_EFAULT;
7315 }
7316
7317 return 0;
7318}
7319#endif
7320
859e8a89
AF
7321#if ((defined(TARGET_NR_timerfd_gettime) || \
7322 defined(TARGET_NR_timerfd_settime)) && defined(CONFIG_TIMERFD)) || \
2c86c90f 7323 defined(TARGET_NR_timer_gettime) || defined(TARGET_NR_timer_settime)
f4f1e10a 7324static inline abi_long host_to_target_itimerspec(abi_ulong target_addr,
2c86c90f
FB
7325 struct itimerspec *host_its)
7326{
7327 if (host_to_target_timespec(target_addr + offsetof(struct target_itimerspec,
7328 it_interval),
7329 &host_its->it_interval) ||
7330 host_to_target_timespec(target_addr + offsetof(struct target_itimerspec,
7331 it_value),
7332 &host_its->it_value)) {
f4f1e10a
ECL
7333 return -TARGET_EFAULT;
7334 }
f4f1e10a
ECL
7335 return 0;
7336}
859e8a89 7337#endif
f4f1e10a 7338
828cb3a1
FB
7339#if ((defined(TARGET_NR_timerfd_gettime64) || \
7340 defined(TARGET_NR_timerfd_settime64)) && defined(CONFIG_TIMERFD)) || \
7341 defined(TARGET_NR_timer_gettime64) || defined(TARGET_NR_timer_settime64)
7342static inline abi_long host_to_target_itimerspec64(abi_ulong target_addr,
7343 struct itimerspec *host_its)
7344{
7345 if (host_to_target_timespec64(target_addr +
7346 offsetof(struct target__kernel_itimerspec,
7347 it_interval),
7348 &host_its->it_interval) ||
7349 host_to_target_timespec64(target_addr +
7350 offsetof(struct target__kernel_itimerspec,
7351 it_value),
7352 &host_its->it_value)) {
7353 return -TARGET_EFAULT;
7354 }
7355 return 0;
7356}
7357#endif
7358
859e8a89
AF
7359#if defined(TARGET_NR_adjtimex) || \
7360 (defined(TARGET_NR_clock_adjtime) && defined(CONFIG_CLOCK_ADJTIME))
19f59bce
AM
7361static inline abi_long target_to_host_timex(struct timex *host_tx,
7362 abi_long target_addr)
7363{
7364 struct target_timex *target_tx;
7365
7366 if (!lock_user_struct(VERIFY_READ, target_tx, target_addr, 1)) {
7367 return -TARGET_EFAULT;
7368 }
7369
7370 __get_user(host_tx->modes, &target_tx->modes);
7371 __get_user(host_tx->offset, &target_tx->offset);
7372 __get_user(host_tx->freq, &target_tx->freq);
7373 __get_user(host_tx->maxerror, &target_tx->maxerror);
7374 __get_user(host_tx->esterror, &target_tx->esterror);
7375 __get_user(host_tx->status, &target_tx->status);
7376 __get_user(host_tx->constant, &target_tx->constant);
7377 __get_user(host_tx->precision, &target_tx->precision);
7378 __get_user(host_tx->tolerance, &target_tx->tolerance);
7379 __get_user(host_tx->time.tv_sec, &target_tx->time.tv_sec);
7380 __get_user(host_tx->time.tv_usec, &target_tx->time.tv_usec);
7381 __get_user(host_tx->tick, &target_tx->tick);
7382 __get_user(host_tx->ppsfreq, &target_tx->ppsfreq);
7383 __get_user(host_tx->jitter, &target_tx->jitter);
7384 __get_user(host_tx->shift, &target_tx->shift);
7385 __get_user(host_tx->stabil, &target_tx->stabil);
7386 __get_user(host_tx->jitcnt, &target_tx->jitcnt);
7387 __get_user(host_tx->calcnt, &target_tx->calcnt);
7388 __get_user(host_tx->errcnt, &target_tx->errcnt);
7389 __get_user(host_tx->stbcnt, &target_tx->stbcnt);
7390 __get_user(host_tx->tai, &target_tx->tai);
7391
7392 unlock_user_struct(target_tx, target_addr, 0);
7393 return 0;
7394}
7395
7396static inline abi_long host_to_target_timex(abi_long target_addr,
7397 struct timex *host_tx)
7398{
7399 struct target_timex *target_tx;
7400
7401 if (!lock_user_struct(VERIFY_WRITE, target_tx, target_addr, 0)) {
7402 return -TARGET_EFAULT;
7403 }
7404
7405 __put_user(host_tx->modes, &target_tx->modes);
7406 __put_user(host_tx->offset, &target_tx->offset);
7407 __put_user(host_tx->freq, &target_tx->freq);
7408 __put_user(host_tx->maxerror, &target_tx->maxerror);
7409 __put_user(host_tx->esterror, &target_tx->esterror);
7410 __put_user(host_tx->status, &target_tx->status);
7411 __put_user(host_tx->constant, &target_tx->constant);
7412 __put_user(host_tx->precision, &target_tx->precision);
7413 __put_user(host_tx->tolerance, &target_tx->tolerance);
7414 __put_user(host_tx->time.tv_sec, &target_tx->time.tv_sec);
7415 __put_user(host_tx->time.tv_usec, &target_tx->time.tv_usec);
7416 __put_user(host_tx->tick, &target_tx->tick);
7417 __put_user(host_tx->ppsfreq, &target_tx->ppsfreq);
7418 __put_user(host_tx->jitter, &target_tx->jitter);
7419 __put_user(host_tx->shift, &target_tx->shift);
7420 __put_user(host_tx->stabil, &target_tx->stabil);
7421 __put_user(host_tx->jitcnt, &target_tx->jitcnt);
7422 __put_user(host_tx->calcnt, &target_tx->calcnt);
7423 __put_user(host_tx->errcnt, &target_tx->errcnt);
7424 __put_user(host_tx->stbcnt, &target_tx->stbcnt);
7425 __put_user(host_tx->tai, &target_tx->tai);
7426
7427 unlock_user_struct(target_tx, target_addr, 1);
7428 return 0;
7429}
859e8a89 7430#endif
19f59bce 7431
6ac03b2c
FB
7432
7433#if defined(TARGET_NR_clock_adjtime64) && defined(CONFIG_CLOCK_ADJTIME)
7434static inline abi_long target_to_host_timex64(struct timex *host_tx,
7435 abi_long target_addr)
7436{
7437 struct target__kernel_timex *target_tx;
7438
7439 if (copy_from_user_timeval64(&host_tx->time, target_addr +
7440 offsetof(struct target__kernel_timex,
7441 time))) {
7442 return -TARGET_EFAULT;
7443 }
7444
7445 if (!lock_user_struct(VERIFY_READ, target_tx, target_addr, 1)) {
7446 return -TARGET_EFAULT;
7447 }
7448
7449 __get_user(host_tx->modes, &target_tx->modes);
7450 __get_user(host_tx->offset, &target_tx->offset);
7451 __get_user(host_tx->freq, &target_tx->freq);
7452 __get_user(host_tx->maxerror, &target_tx->maxerror);
7453 __get_user(host_tx->esterror, &target_tx->esterror);
7454 __get_user(host_tx->status, &target_tx->status);
7455 __get_user(host_tx->constant, &target_tx->constant);
7456 __get_user(host_tx->precision, &target_tx->precision);
7457 __get_user(host_tx->tolerance, &target_tx->tolerance);
7458 __get_user(host_tx->tick, &target_tx->tick);
7459 __get_user(host_tx->ppsfreq, &target_tx->ppsfreq);
7460 __get_user(host_tx->jitter, &target_tx->jitter);
7461 __get_user(host_tx->shift, &target_tx->shift);
7462 __get_user(host_tx->stabil, &target_tx->stabil);
7463 __get_user(host_tx->jitcnt, &target_tx->jitcnt);
7464 __get_user(host_tx->calcnt, &target_tx->calcnt);
7465 __get_user(host_tx->errcnt, &target_tx->errcnt);
7466 __get_user(host_tx->stbcnt, &target_tx->stbcnt);
7467 __get_user(host_tx->tai, &target_tx->tai);
7468
7469 unlock_user_struct(target_tx, target_addr, 0);
7470 return 0;
7471}
7472
7473static inline abi_long host_to_target_timex64(abi_long target_addr,
7474 struct timex *host_tx)
7475{
7476 struct target__kernel_timex *target_tx;
7477
7478 if (copy_to_user_timeval64(target_addr +
7479 offsetof(struct target__kernel_timex, time),
7480 &host_tx->time)) {
7481 return -TARGET_EFAULT;
7482 }
7483
7484 if (!lock_user_struct(VERIFY_WRITE, target_tx, target_addr, 0)) {
7485 return -TARGET_EFAULT;
7486 }
7487
7488 __put_user(host_tx->modes, &target_tx->modes);
7489 __put_user(host_tx->offset, &target_tx->offset);
7490 __put_user(host_tx->freq, &target_tx->freq);
7491 __put_user(host_tx->maxerror, &target_tx->maxerror);
7492 __put_user(host_tx->esterror, &target_tx->esterror);
7493 __put_user(host_tx->status, &target_tx->status);
7494 __put_user(host_tx->constant, &target_tx->constant);
7495 __put_user(host_tx->precision, &target_tx->precision);
7496 __put_user(host_tx->tolerance, &target_tx->tolerance);
7497 __put_user(host_tx->tick, &target_tx->tick);
7498 __put_user(host_tx->ppsfreq, &target_tx->ppsfreq);
7499 __put_user(host_tx->jitter, &target_tx->jitter);
7500 __put_user(host_tx->shift, &target_tx->shift);
7501 __put_user(host_tx->stabil, &target_tx->stabil);
7502 __put_user(host_tx->jitcnt, &target_tx->jitcnt);
7503 __put_user(host_tx->calcnt, &target_tx->calcnt);
7504 __put_user(host_tx->errcnt, &target_tx->errcnt);
7505 __put_user(host_tx->stbcnt, &target_tx->stbcnt);
7506 __put_user(host_tx->tai, &target_tx->tai);
7507
7508 unlock_user_struct(target_tx, target_addr, 1);
7509 return 0;
7510}
7511#endif
7512
96ff758c
MF
7513#ifndef HAVE_SIGEV_NOTIFY_THREAD_ID
7514#define sigev_notify_thread_id _sigev_un._tid
7515#endif
7516
c065976f
PM
7517static inline abi_long target_to_host_sigevent(struct sigevent *host_sevp,
7518 abi_ulong target_addr)
7519{
7520 struct target_sigevent *target_sevp;
7521
7522 if (!lock_user_struct(VERIFY_READ, target_sevp, target_addr, 1)) {
7523 return -TARGET_EFAULT;
7524 }
7525
7526 /* This union is awkward on 64 bit systems because it has a 32 bit
7527 * integer and a pointer in it; we follow the conversion approach
7528 * used for handling sigval types in signal.c so the guest should get
7529 * the correct value back even if we did a 64 bit byteswap and it's
7530 * using the 32 bit integer.
7531 */
7532 host_sevp->sigev_value.sival_ptr =
7533 (void *)(uintptr_t)tswapal(target_sevp->sigev_value.sival_ptr);
7534 host_sevp->sigev_signo =
7535 target_to_host_signal(tswap32(target_sevp->sigev_signo));
7536 host_sevp->sigev_notify = tswap32(target_sevp->sigev_notify);
96ff758c 7537 host_sevp->sigev_notify_thread_id = tswap32(target_sevp->_sigev_un._tid);
c065976f
PM
7538
7539 unlock_user_struct(target_sevp, target_addr, 1);
7540 return 0;
7541}
7542
6f6a4032
TM
7543#if defined(TARGET_NR_mlockall)
7544static inline int target_to_host_mlockall_arg(int arg)
7545{
7546 int result = 0;
7547
02e5d7d7 7548 if (arg & TARGET_MCL_CURRENT) {
6f6a4032
TM
7549 result |= MCL_CURRENT;
7550 }
02e5d7d7 7551 if (arg & TARGET_MCL_FUTURE) {
6f6a4032
TM
7552 result |= MCL_FUTURE;
7553 }
02e5d7d7
FB
7554#ifdef MCL_ONFAULT
7555 if (arg & TARGET_MCL_ONFAULT) {
7556 result |= MCL_ONFAULT;
7557 }
7558#endif
7559
6f6a4032
TM
7560 return result;
7561}
7562#endif
7563
fe080593
HD
7564static inline int target_to_host_msync_arg(abi_long arg)
7565{
7566 return ((arg & TARGET_MS_ASYNC) ? MS_ASYNC : 0) |
7567 ((arg & TARGET_MS_INVALIDATE) ? MS_INVALIDATE : 0) |
7568 ((arg & TARGET_MS_SYNC) ? MS_SYNC : 0) |
7569 (arg & ~(TARGET_MS_ASYNC | TARGET_MS_INVALIDATE | TARGET_MS_SYNC));
7570}
7571
4f7f8924
AR
7572#if (defined(TARGET_NR_stat64) || defined(TARGET_NR_lstat64) || \
7573 defined(TARGET_NR_fstat64) || defined(TARGET_NR_fstatat64) || \
7574 defined(TARGET_NR_newfstatat))
a0939b89 7575static inline abi_long host_to_target_stat64(CPUArchState *cpu_env,
6a24a778
AZ
7576 abi_ulong target_addr,
7577 struct stat *host_st)
7578{
09701199 7579#if defined(TARGET_ARM) && defined(TARGET_ABI32)
0effdc29 7580 if (cpu_env->eabi) {
6a24a778
AZ
7581 struct target_eabi_stat64 *target_st;
7582
7583 if (!lock_user_struct(VERIFY_WRITE, target_st, target_addr, 0))
7584 return -TARGET_EFAULT;
7585 memset(target_st, 0, sizeof(struct target_eabi_stat64));
7586 __put_user(host_st->st_dev, &target_st->st_dev);
7587 __put_user(host_st->st_ino, &target_st->st_ino);
7588#ifdef TARGET_STAT64_HAS_BROKEN_ST_INO
7589 __put_user(host_st->st_ino, &target_st->__st_ino);
7590#endif
7591 __put_user(host_st->st_mode, &target_st->st_mode);
7592 __put_user(host_st->st_nlink, &target_st->st_nlink);
7593 __put_user(host_st->st_uid, &target_st->st_uid);
7594 __put_user(host_st->st_gid, &target_st->st_gid);
7595 __put_user(host_st->st_rdev, &target_st->st_rdev);
7596 __put_user(host_st->st_size, &target_st->st_size);
7597 __put_user(host_st->st_blksize, &target_st->st_blksize);
7598 __put_user(host_st->st_blocks, &target_st->st_blocks);
7599 __put_user(host_st->st_atime, &target_st->target_st_atime);
7600 __put_user(host_st->st_mtime, &target_st->target_st_mtime);
7601 __put_user(host_st->st_ctime, &target_st->target_st_ctime);
febf6fad 7602#ifdef HAVE_STRUCT_STAT_ST_ATIM
5f992db6
CYT
7603 __put_user(host_st->st_atim.tv_nsec, &target_st->target_st_atime_nsec);
7604 __put_user(host_st->st_mtim.tv_nsec, &target_st->target_st_mtime_nsec);
7605 __put_user(host_st->st_ctim.tv_nsec, &target_st->target_st_ctime_nsec);
7606#endif
6a24a778
AZ
7607 unlock_user_struct(target_st, target_addr, 1);
7608 } else
7609#endif
7610 {
20d155bc 7611#if defined(TARGET_HAS_STRUCT_STAT64)
6a24a778 7612 struct target_stat64 *target_st;
20d155bc
SW
7613#else
7614 struct target_stat *target_st;
9d33b76b 7615#endif
6a24a778
AZ
7616
7617 if (!lock_user_struct(VERIFY_WRITE, target_st, target_addr, 0))
7618 return -TARGET_EFAULT;
9d33b76b 7619 memset(target_st, 0, sizeof(*target_st));
6a24a778
AZ
7620 __put_user(host_st->st_dev, &target_st->st_dev);
7621 __put_user(host_st->st_ino, &target_st->st_ino);
7622#ifdef TARGET_STAT64_HAS_BROKEN_ST_INO
7623 __put_user(host_st->st_ino, &target_st->__st_ino);
7624#endif
7625 __put_user(host_st->st_mode, &target_st->st_mode);
7626 __put_user(host_st->st_nlink, &target_st->st_nlink);
7627 __put_user(host_st->st_uid, &target_st->st_uid);
7628 __put_user(host_st->st_gid, &target_st->st_gid);
7629 __put_user(host_st->st_rdev, &target_st->st_rdev);
7630 /* XXX: better use of kernel struct */
7631 __put_user(host_st->st_size, &target_st->st_size);
7632 __put_user(host_st->st_blksize, &target_st->st_blksize);
7633 __put_user(host_st->st_blocks, &target_st->st_blocks);
7634 __put_user(host_st->st_atime, &target_st->target_st_atime);
7635 __put_user(host_st->st_mtime, &target_st->target_st_mtime);
7636 __put_user(host_st->st_ctime, &target_st->target_st_ctime);
febf6fad 7637#ifdef HAVE_STRUCT_STAT_ST_ATIM
5f992db6
CYT
7638 __put_user(host_st->st_atim.tv_nsec, &target_st->target_st_atime_nsec);
7639 __put_user(host_st->st_mtim.tv_nsec, &target_st->target_st_mtime_nsec);
7640 __put_user(host_st->st_ctim.tv_nsec, &target_st->target_st_ctime_nsec);
7641#endif
6a24a778
AZ
7642 unlock_user_struct(target_st, target_addr, 1);
7643 }
7644
7645 return 0;
7646}
4f7f8924 7647#endif
6a24a778 7648
efa92184
AR
7649#if defined(TARGET_NR_statx) && defined(__NR_statx)
7650static inline abi_long host_to_target_statx(struct target_statx *host_stx,
7651 abi_ulong target_addr)
7652{
7653 struct target_statx *target_stx;
7654
7655 if (!lock_user_struct(VERIFY_WRITE, target_stx, target_addr, 0)) {
7656 return -TARGET_EFAULT;
7657 }
7658 memset(target_stx, 0, sizeof(*target_stx));
7659
7660 __put_user(host_stx->stx_mask, &target_stx->stx_mask);
7661 __put_user(host_stx->stx_blksize, &target_stx->stx_blksize);
7662 __put_user(host_stx->stx_attributes, &target_stx->stx_attributes);
7663 __put_user(host_stx->stx_nlink, &target_stx->stx_nlink);
7664 __put_user(host_stx->stx_uid, &target_stx->stx_uid);
7665 __put_user(host_stx->stx_gid, &target_stx->stx_gid);
7666 __put_user(host_stx->stx_mode, &target_stx->stx_mode);
7667 __put_user(host_stx->stx_ino, &target_stx->stx_ino);
7668 __put_user(host_stx->stx_size, &target_stx->stx_size);
7669 __put_user(host_stx->stx_blocks, &target_stx->stx_blocks);
7670 __put_user(host_stx->stx_attributes_mask, &target_stx->stx_attributes_mask);
7671 __put_user(host_stx->stx_atime.tv_sec, &target_stx->stx_atime.tv_sec);
7672 __put_user(host_stx->stx_atime.tv_nsec, &target_stx->stx_atime.tv_nsec);
d1e26707
AC
7673 __put_user(host_stx->stx_btime.tv_sec, &target_stx->stx_btime.tv_sec);
7674 __put_user(host_stx->stx_btime.tv_nsec, &target_stx->stx_btime.tv_nsec);
7675 __put_user(host_stx->stx_ctime.tv_sec, &target_stx->stx_ctime.tv_sec);
7676 __put_user(host_stx->stx_ctime.tv_nsec, &target_stx->stx_ctime.tv_nsec);
7677 __put_user(host_stx->stx_mtime.tv_sec, &target_stx->stx_mtime.tv_sec);
7678 __put_user(host_stx->stx_mtime.tv_nsec, &target_stx->stx_mtime.tv_nsec);
efa92184
AR
7679 __put_user(host_stx->stx_rdev_major, &target_stx->stx_rdev_major);
7680 __put_user(host_stx->stx_rdev_minor, &target_stx->stx_rdev_minor);
7681 __put_user(host_stx->stx_dev_major, &target_stx->stx_dev_major);
7682 __put_user(host_stx->stx_dev_minor, &target_stx->stx_dev_minor);
7683
7684 unlock_user_struct(target_stx, target_addr, 1);
7685
7686 return 0;
7687}
7688#endif
7689
14690296
AF
7690static int do_sys_futex(int *uaddr, int op, int val,
7691 const struct timespec *timeout, int *uaddr2,
7692 int val3)
7693{
7694#if HOST_LONG_BITS == 64
7695#if defined(__NR_futex)
7696 /* always a 64-bit time_t, it doesn't define _time64 version */
7697 return sys_futex(uaddr, op, val, timeout, uaddr2, val3);
7698
7699#endif
7700#else /* HOST_LONG_BITS == 64 */
7701#if defined(__NR_futex_time64)
7702 if (sizeof(timeout->tv_sec) == 8) {
7703 /* _time64 function on 32bit arch */
7704 return sys_futex_time64(uaddr, op, val, timeout, uaddr2, val3);
7705 }
7706#endif
7707#if defined(__NR_futex)
7708 /* old function on 32bit arch */
7709 return sys_futex(uaddr, op, val, timeout, uaddr2, val3);
7710#endif
7711#endif /* HOST_LONG_BITS == 64 */
7712 g_assert_not_reached();
7713}
7714
7715static int do_safe_futex(int *uaddr, int op, int val,
7716 const struct timespec *timeout, int *uaddr2,
7717 int val3)
7718{
7719#if HOST_LONG_BITS == 64
7720#if defined(__NR_futex)
7721 /* always a 64-bit time_t, it doesn't define _time64 version */
7722 return get_errno(safe_futex(uaddr, op, val, timeout, uaddr2, val3));
7723#endif
7724#else /* HOST_LONG_BITS == 64 */
7725#if defined(__NR_futex_time64)
7726 if (sizeof(timeout->tv_sec) == 8) {
7727 /* _time64 function on 32bit arch */
7728 return get_errno(safe_futex_time64(uaddr, op, val, timeout, uaddr2,
7729 val3));
7730 }
7731#endif
7732#if defined(__NR_futex)
7733 /* old function on 32bit arch */
7734 return get_errno(safe_futex(uaddr, op, val, timeout, uaddr2, val3));
7735#endif
7736#endif /* HOST_LONG_BITS == 64 */
7737 return -TARGET_ENOSYS;
7738}
efa92184 7739
bd0c5661
PB
7740/* ??? Using host futex calls even when target atomic operations
7741 are not really atomic probably breaks things. However implementing
7742 futexes locally would make futexes shared between multiple processes
7743 tricky. However they're probably useless because guest atomic
7744 operations won't work either. */
0fbc0f8d
RH
7745#if defined(TARGET_NR_futex) || defined(TARGET_NR_futex_time64)
7746static int do_futex(CPUState *cpu, bool time64, target_ulong uaddr,
7747 int op, int val, target_ulong timeout,
7748 target_ulong uaddr2, int val3)
bd0c5661 7749{
57b9ccd4
RH
7750 struct timespec ts, *pts = NULL;
7751 void *haddr2 = NULL;
a16aae0c 7752 int base_op;
bd0c5661 7753
57b9ccd4 7754 /* We assume FUTEX_* constants are the same on both host and target. */
a29ccd63 7755#ifdef FUTEX_CMD_MASK
a16aae0c 7756 base_op = op & FUTEX_CMD_MASK;
a29ccd63 7757#else
a16aae0c 7758 base_op = op;
a29ccd63 7759#endif
a16aae0c 7760 switch (base_op) {
bd0c5661 7761 case FUTEX_WAIT:
cce246e0 7762 case FUTEX_WAIT_BITSET:
57b9ccd4
RH
7763 val = tswap32(val);
7764 break;
c72a90df
RH
7765 case FUTEX_WAIT_REQUEUE_PI:
7766 val = tswap32(val);
7767 haddr2 = g2h(cpu, uaddr2);
7768 break;
7769 case FUTEX_LOCK_PI:
7770 case FUTEX_LOCK_PI2:
7771 break;
bd0c5661 7772 case FUTEX_WAKE:
a6180f8a 7773 case FUTEX_WAKE_BITSET:
c72a90df
RH
7774 case FUTEX_TRYLOCK_PI:
7775 case FUTEX_UNLOCK_PI:
57b9ccd4
RH
7776 timeout = 0;
7777 break;
bd0c5661 7778 case FUTEX_FD:
0f946731 7779 val = target_to_host_signal(val);
57b9ccd4
RH
7780 timeout = 0;
7781 break;
bd0c5661 7782 case FUTEX_CMP_REQUEUE:
c72a90df 7783 case FUTEX_CMP_REQUEUE_PI:
57b9ccd4
RH
7784 val3 = tswap32(val3);
7785 /* fall through */
7786 case FUTEX_REQUEUE:
a16aae0c 7787 case FUTEX_WAKE_OP:
57b9ccd4
RH
7788 /*
7789 * For these, the 4th argument is not TIMEOUT, but VAL2.
7790 * But the prototype of do_safe_futex takes a pointer, so
7791 * insert casts to satisfy the compiler. We do not need
7792 * to tswap VAL2 since it's not compared to guest memory.
7793 */
7794 pts = (struct timespec *)(uintptr_t)timeout;
7795 timeout = 0;
7796 haddr2 = g2h(cpu, uaddr2);
7797 break;
bd0c5661
PB
7798 default:
7799 return -TARGET_ENOSYS;
7800 }
57b9ccd4
RH
7801 if (timeout) {
7802 pts = &ts;
7803 if (time64
7804 ? target_to_host_timespec64(pts, timeout)
7805 : target_to_host_timespec(pts, timeout)) {
7806 return -TARGET_EFAULT;
7807 }
7808 }
7809 return do_safe_futex(g2h(cpu, uaddr), op, val, pts, haddr2, val3);
bd0c5661 7810}
859e8a89 7811#endif
14690296 7812
0f0426f3
LV
7813#if defined(TARGET_NR_name_to_handle_at) && defined(CONFIG_OPEN_BY_HANDLE)
7814static abi_long do_name_to_handle_at(abi_long dirfd, abi_long pathname,
7815 abi_long handle, abi_long mount_id,
7816 abi_long flags)
7817{
7818 struct file_handle *target_fh;
7819 struct file_handle *fh;
7820 int mid = 0;
7821 abi_long ret;
7822 char *name;
7823 unsigned int size, total_size;
7824
7825 if (get_user_s32(size, handle)) {
7826 return -TARGET_EFAULT;
7827 }
7828
7829 name = lock_user_string(pathname);
7830 if (!name) {
7831 return -TARGET_EFAULT;
7832 }
7833
7834 total_size = sizeof(struct file_handle) + size;
7835 target_fh = lock_user(VERIFY_WRITE, handle, total_size, 0);
7836 if (!target_fh) {
7837 unlock_user(name, pathname, 0);
7838 return -TARGET_EFAULT;
7839 }
7840
7841 fh = g_malloc0(total_size);
7842 fh->handle_bytes = size;
7843
7844 ret = get_errno(name_to_handle_at(dirfd, path(name), fh, &mid, flags));
7845 unlock_user(name, pathname, 0);
7846
7847 /* man name_to_handle_at(2):
7848 * Other than the use of the handle_bytes field, the caller should treat
7849 * the file_handle structure as an opaque data type
7850 */
7851
7852 memcpy(target_fh, fh, total_size);
7853 target_fh->handle_bytes = tswap32(fh->handle_bytes);
7854 target_fh->handle_type = tswap32(fh->handle_type);
7855 g_free(fh);
7856 unlock_user(target_fh, handle, total_size);
7857
7858 if (put_user_s32(mid, mount_id)) {
7859 return -TARGET_EFAULT;
7860 }
7861
7862 return ret;
7863
7864}
7865#endif
7866
7867#if defined(TARGET_NR_open_by_handle_at) && defined(CONFIG_OPEN_BY_HANDLE)
7868static abi_long do_open_by_handle_at(abi_long mount_fd, abi_long handle,
7869 abi_long flags)
7870{
7871 struct file_handle *target_fh;
7872 struct file_handle *fh;
7873 unsigned int size, total_size;
7874 abi_long ret;
7875
7876 if (get_user_s32(size, handle)) {
7877 return -TARGET_EFAULT;
7878 }
7879
7880 total_size = sizeof(struct file_handle) + size;
7881 target_fh = lock_user(VERIFY_READ, handle, total_size, 1);
7882 if (!target_fh) {
7883 return -TARGET_EFAULT;
7884 }
7885
e9d49d51 7886 fh = g_memdup(target_fh, total_size);
0f0426f3
LV
7887 fh->handle_bytes = size;
7888 fh->handle_type = tswap32(target_fh->handle_type);
7889
7890 ret = get_errno(open_by_handle_at(mount_fd, fh,
7891 target_to_host_bitmask(flags, fcntl_flags_tbl)));
7892
7893 g_free(fh);
7894
7895 unlock_user(target_fh, handle, total_size);
7896
7897 return ret;
7898}
7899#endif
bd0c5661 7900
e36800c9
LV
7901#if defined(TARGET_NR_signalfd) || defined(TARGET_NR_signalfd4)
7902
e36800c9
LV
7903static abi_long do_signalfd4(int fd, abi_long mask, int flags)
7904{
7905 int host_flags;
7906 target_sigset_t *target_mask;
7907 sigset_t host_mask;
7908 abi_long ret;
7909
78721301 7910 if (flags & ~(TARGET_O_NONBLOCK_MASK | TARGET_O_CLOEXEC)) {
e36800c9
LV
7911 return -TARGET_EINVAL;
7912 }
7913 if (!lock_user_struct(VERIFY_READ, target_mask, mask, 1)) {
7914 return -TARGET_EFAULT;
7915 }
7916
7917 target_to_host_sigset(&host_mask, target_mask);
7918
7919 host_flags = target_to_host_bitmask(flags, fcntl_flags_tbl);
7920
7921 ret = get_errno(signalfd(fd, &host_mask, host_flags));
7922 if (ret >= 0) {
7923 fd_trans_register(ret, &target_signalfd_trans);
7924 }
7925
7926 unlock_user_struct(target_mask, mask, 0);
7927
7928 return ret;
7929}
7930#endif
7931
1d9d8b55
PB
7932/* Map host to target signal numbers for the wait family of syscalls.
7933 Assume all other status bits are the same. */
a05c6409 7934int host_to_target_waitstatus(int status)
1d9d8b55
PB
7935{
7936 if (WIFSIGNALED(status)) {
7937 return host_to_target_signal(WTERMSIG(status)) | (status & ~0x7f);
7938 }
7939 if (WIFSTOPPED(status)) {
7940 return (host_to_target_signal(WSTOPSIG(status)) << 8)
7941 | (status & 0xff);
7942 }
7943 return status;
7944}
7945
a0939b89 7946static int open_self_cmdline(CPUArchState *cpu_env, int fd)
76b94245 7947{
0effdc29 7948 CPUState *cpu = env_cpu(cpu_env);
58de8b96
AS
7949 struct linux_binprm *bprm = ((TaskState *)cpu->opaque)->bprm;
7950 int i;
76b94245 7951
58de8b96
AS
7952 for (i = 0; i < bprm->argc; i++) {
7953 size_t len = strlen(bprm->argv[i]) + 1;
76b94245 7954
58de8b96 7955 if (write(fd, bprm->argv[i], len) != len) {
76b94245 7956 return -1;
76b94245
WVS
7957 }
7958 }
7959
58de8b96 7960 return 0;
76b94245
WVS
7961}
7962
7b7a3366
RH
7963struct open_self_maps_data {
7964 TaskState *ts;
7965 IntervalTreeRoot *host_maps;
7966 int fd;
7967 bool smaps;
7968};
7969
7970/*
7971 * Subroutine to output one line of /proc/self/maps,
7972 * or one region of /proc/self/smaps.
7973 */
7974
7975#ifdef TARGET_HPPA
7976# define test_stack(S, E, L) (E == L)
7977#else
7978# define test_stack(S, E, L) (S == L)
7979#endif
7980
7981static void open_self_maps_4(const struct open_self_maps_data *d,
7982 const MapInfo *mi, abi_ptr start,
7983 abi_ptr end, unsigned flags)
77ae5761 7984{
7b7a3366
RH
7985 const struct image_info *info = d->ts->info;
7986 const char *path = mi->path;
7987 uint64_t offset;
7988 int fd = d->fd;
7989 int count;
7990
7991 if (test_stack(start, end, info->stack_limit)) {
7992 path = "[stack]";
92d2a03f
RH
7993 } else if (start == info->brk) {
7994 path = "[heap]";
7b7a3366 7995 }
77ae5761 7996
7b7a3366
RH
7997 /* Except null device (MAP_ANON), adjust offset for this fragment. */
7998 offset = mi->offset;
7999 if (mi->dev) {
8000 uintptr_t hstart = (uintptr_t)g2h_untagged(start);
8001 offset += hstart - mi->itree.start;
8002 }
8003
8004 count = dprintf(fd, TARGET_ABI_FMT_ptr "-" TARGET_ABI_FMT_ptr
8005 " %c%c%c%c %08" PRIx64 " %02x:%02x %"PRId64,
8006 start, end,
8007 (flags & PAGE_READ) ? 'r' : '-',
8008 (flags & PAGE_WRITE_ORG) ? 'w' : '-',
8009 (flags & PAGE_EXEC) ? 'x' : '-',
8010 mi->is_priv ? 'p' : 's',
8011 offset, major(mi->dev), minor(mi->dev),
8012 (uint64_t)mi->inode);
8013 if (path) {
8014 dprintf(fd, "%*s%s\n", 73 - count, "", path);
8015 } else {
8016 dprintf(fd, "\n");
8017 }
8018
8019 if (d->smaps) {
8020 unsigned long size = end - start;
8021 unsigned long page_size_kb = TARGET_PAGE_SIZE >> 10;
8022 unsigned long size_kb = size >> 10;
77ae5761 8023
7b7a3366 8024 dprintf(fd, "Size: %lu kB\n"
77ae5761
IL
8025 "KernelPageSize: %lu kB\n"
8026 "MMUPageSize: %lu kB\n"
8027 "Rss: 0 kB\n"
8028 "Pss: 0 kB\n"
8029 "Pss_Dirty: 0 kB\n"
8030 "Shared_Clean: 0 kB\n"
8031 "Shared_Dirty: 0 kB\n"
8032 "Private_Clean: 0 kB\n"
8033 "Private_Dirty: 0 kB\n"
8034 "Referenced: 0 kB\n"
6467d9eb 8035 "Anonymous: %lu kB\n"
77ae5761
IL
8036 "LazyFree: 0 kB\n"
8037 "AnonHugePages: 0 kB\n"
8038 "ShmemPmdMapped: 0 kB\n"
8039 "FilePmdMapped: 0 kB\n"
8040 "Shared_Hugetlb: 0 kB\n"
8041 "Private_Hugetlb: 0 kB\n"
8042 "Swap: 0 kB\n"
8043 "SwapPss: 0 kB\n"
8044 "Locked: 0 kB\n"
7b7a3366
RH
8045 "THPeligible: 0\n"
8046 "VmFlags:%s%s%s%s%s%s%s%s\n",
8047 size_kb, page_size_kb, page_size_kb,
6467d9eb 8048 (flags & PAGE_ANON ? size_kb : 0),
7b7a3366
RH
8049 (flags & PAGE_READ) ? " rd" : "",
8050 (flags & PAGE_WRITE_ORG) ? " wr" : "",
8051 (flags & PAGE_EXEC) ? " ex" : "",
8052 mi->is_priv ? "" : " sh",
8053 (flags & PAGE_READ) ? " mr" : "",
8054 (flags & PAGE_WRITE_ORG) ? " mw" : "",
8055 (flags & PAGE_EXEC) ? " me" : "",
8056 mi->is_priv ? "" : " ms");
8057 }
77ae5761
IL
8058}
8059
7b7a3366
RH
8060/*
8061 * Callback for walk_memory_regions, when read_self_maps() fails.
8062 * Proceed without the benefit of host /proc/self/maps cross-check.
8063 */
8064static int open_self_maps_3(void *opaque, target_ulong guest_start,
8065 target_ulong guest_end, unsigned long flags)
36c08d49 8066{
7b7a3366 8067 static const MapInfo mi = { .is_priv = true };
1a49ef2a 8068
7b7a3366
RH
8069 open_self_maps_4(opaque, &mi, guest_start, guest_end, flags);
8070 return 0;
8071}
1a49ef2a 8072
7b7a3366
RH
8073/*
8074 * Callback for walk_memory_regions, when read_self_maps() succeeds.
8075 */
8076static int open_self_maps_2(void *opaque, target_ulong guest_start,
8077 target_ulong guest_end, unsigned long flags)
8078{
8079 const struct open_self_maps_data *d = opaque;
8080 uintptr_t host_start = (uintptr_t)g2h_untagged(guest_start);
8081 uintptr_t host_last = (uintptr_t)g2h_untagged(guest_end - 1);
01ef6b9e 8082
7b7a3366
RH
8083 while (1) {
8084 IntervalTreeNode *n =
8085 interval_tree_iter_first(d->host_maps, host_start, host_start);
8086 MapInfo *mi = container_of(n, MapInfo, itree);
8087 uintptr_t this_hlast = MIN(host_last, n->last);
8088 target_ulong this_gend = h2g(this_hlast) + 1;
01ef6b9e 8089
7b7a3366 8090 open_self_maps_4(d, mi, guest_start, this_gend, flags);
01ef6b9e 8091
7b7a3366
RH
8092 if (this_hlast == host_last) {
8093 return 0;
1a49ef2a 8094 }
7b7a3366
RH
8095 host_start = this_hlast + 1;
8096 guest_start = h2g(host_start);
1a49ef2a 8097 }
7b7a3366 8098}
1a49ef2a 8099
7b7a3366
RH
8100static int open_self_maps_1(CPUArchState *env, int fd, bool smaps)
8101{
8102 struct open_self_maps_data d = {
8103 .ts = env_cpu(env)->opaque,
8104 .host_maps = read_self_maps(),
8105 .fd = fd,
8106 .smaps = smaps
8107 };
01ef6b9e 8108
7b7a3366
RH
8109 if (d.host_maps) {
8110 walk_memory_regions(&d, open_self_maps_2);
8111 free_self_maps(d.host_maps);
8112 } else {
8113 walk_memory_regions(&d, open_self_maps_3);
77ae5761 8114 }
36c08d49
AG
8115 return 0;
8116}
8117
77ae5761
IL
8118static int open_self_maps(CPUArchState *cpu_env, int fd)
8119{
8120 return open_self_maps_1(cpu_env, fd, false);
8121}
8122
8123static int open_self_smaps(CPUArchState *cpu_env, int fd)
8124{
8125 return open_self_maps_1(cpu_env, fd, true);
8126}
8127
a0939b89 8128static int open_self_stat(CPUArchState *cpu_env, int fd)
480b8e7d 8129{
0effdc29 8130 CPUState *cpu = env_cpu(cpu_env);
0429a971 8131 TaskState *ts = cpu->opaque;
7ad4d5a4 8132 g_autoptr(GString) buf = g_string_new(NULL);
480b8e7d
AG
8133 int i;
8134
8135 for (i = 0; i < 44; i++) {
7ad4d5a4
AB
8136 if (i == 0) {
8137 /* pid */
8138 g_string_printf(buf, FMT_pid " ", getpid());
8139 } else if (i == 1) {
8140 /* app name */
8141 gchar *bin = g_strrstr(ts->bprm->argv[0], "/");
8142 bin = bin ? bin + 1 : ts->bprm->argv[0];
8143 g_string_printf(buf, "(%.15s) ", bin);
25bb27c7
AS
8144 } else if (i == 2) {
8145 /* task state */
8146 g_string_assign(buf, "R "); /* we are running right now */
7aa9fe3a
AS
8147 } else if (i == 3) {
8148 /* ppid */
8149 g_string_printf(buf, FMT_pid " ", getppid());
eb33cdae
CE
8150 } else if (i == 21) {
8151 /* starttime */
8152 g_string_printf(buf, "%" PRIu64 " ", ts->start_boottime);
7ad4d5a4
AB
8153 } else if (i == 27) {
8154 /* stack bottom */
8155 g_string_printf(buf, TARGET_ABI_FMT_ld " ", ts->info->start_stack);
8156 } else {
8157 /* for the rest, there is MasterCard */
8158 g_string_printf(buf, "0%c", i == 43 ? '\n' : ' ');
8159 }
8160
8161 if (write(fd, buf->str, buf->len) != buf->len) {
8162 return -1;
8163 }
480b8e7d
AG
8164 }
8165
8166 return 0;
8167}
8168
a0939b89 8169static int open_self_auxv(CPUArchState *cpu_env, int fd)
257450ee 8170{
0effdc29 8171 CPUState *cpu = env_cpu(cpu_env);
0429a971 8172 TaskState *ts = cpu->opaque;
257450ee
AG
8173 abi_ulong auxv = ts->info->saved_auxv;
8174 abi_ulong len = ts->info->auxv_len;
8175 char *ptr;
8176
8177 /*
8178 * Auxiliary vector is stored in target process stack.
8179 * read in whole auxv vector and copy it to file
8180 */
8181 ptr = lock_user(VERIFY_READ, auxv, len, 0);
8182 if (ptr != NULL) {
8183 while (len > 0) {
8184 ssize_t r;
8185 r = write(fd, ptr, len);
8186 if (r <= 0) {
8187 break;
8188 }
8189 len -= r;
8190 ptr += r;
8191 }
8192 lseek(fd, 0, SEEK_SET);
8193 unlock_user(ptr, auxv, len);
8194 }
8195
8196 return 0;
8197}
8198
463d8e73
AS
8199static int is_proc_myself(const char *filename, const char *entry)
8200{
8201 if (!strncmp(filename, "/proc/", strlen("/proc/"))) {
8202 filename += strlen("/proc/");
8203 if (!strncmp(filename, "self/", strlen("self/"))) {
8204 filename += strlen("self/");
8205 } else if (*filename >= '1' && *filename <= '9') {
8206 char myself[80];
8207 snprintf(myself, sizeof(myself), "%d/", getpid());
8208 if (!strncmp(filename, myself, strlen(myself))) {
8209 filename += strlen(myself);
8210 } else {
8211 return 0;
8212 }
8213 } else {
8214 return 0;
8215 }
8216 if (!strcmp(filename, entry)) {
8217 return 1;
8218 }
8219 }
8220 return 0;
8221}
8222
bd5ccd61
HD
8223static void excp_dump_file(FILE *logfile, CPUArchState *env,
8224 const char *fmt, int code)
8225{
8226 if (logfile) {
8227 CPUState *cs = env_cpu(env);
8228
8229 fprintf(logfile, fmt, code);
8230 fprintf(logfile, "Failing executable: %s\n", exec_path);
8231 cpu_dump_state(cs, logfile, 0);
8232 open_self_maps(env, fileno(logfile));
8233 }
8234}
8235
8236void target_exception_dump(CPUArchState *env, const char *fmt, int code)
8237{
8238 /* dump to console */
8239 excp_dump_file(stderr, env, fmt, code);
8240
8241 /* dump to log file */
8242 if (qemu_log_separate()) {
8243 FILE *logfile = qemu_log_trylock();
8244
8245 excp_dump_file(logfile, env, fmt, code);
8246 qemu_log_unlock(logfile);
8247 }
8248}
8249
121c8dd6
RH
8250#include "target_proc.h"
8251
ee3eb3a7 8252#if HOST_BIG_ENDIAN != TARGET_BIG_ENDIAN || \
121c8dd6
RH
8253 defined(HAVE_ARCH_PROC_CPUINFO) || \
8254 defined(HAVE_ARCH_PROC_HARDWARE)
de6b9933
LV
8255static int is_proc(const char *filename, const char *entry)
8256{
8257 return strcmp(filename, entry) == 0;
8258}
fff69382 8259#endif
de6b9933 8260
ee3eb3a7 8261#if HOST_BIG_ENDIAN != TARGET_BIG_ENDIAN
a0939b89 8262static int open_net_route(CPUArchState *cpu_env, int fd)
de6b9933
LV
8263{
8264 FILE *fp;
8265 char *line = NULL;
8266 size_t len = 0;
8267 ssize_t read;
8268
8269 fp = fopen("/proc/net/route", "r");
8270 if (fp == NULL) {
a3ca7bb2 8271 return -1;
de6b9933
LV
8272 }
8273
8274 /* read header */
8275
8276 read = getline(&line, &len, fp);
8277 dprintf(fd, "%s", line);
8278
8279 /* read routes */
8280
8281 while ((read = getline(&line, &len, fp)) != -1) {
8282 char iface[16];
8283 uint32_t dest, gw, mask;
8284 unsigned int flags, refcnt, use, metric, mtu, window, irtt;
9d0bd0cd
PM
8285 int fields;
8286
8287 fields = sscanf(line,
8288 "%s\t%08x\t%08x\t%04x\t%d\t%d\t%d\t%08x\t%d\t%u\t%u\n",
8289 iface, &dest, &gw, &flags, &refcnt, &use, &metric,
8290 &mask, &mtu, &window, &irtt);
8291 if (fields != 11) {
8292 continue;
8293 }
de6b9933
LV
8294 dprintf(fd, "%s\t%08x\t%08x\t%04x\t%d\t%d\t%d\t%08x\t%d\t%u\t%u\n",
8295 iface, tswap32(dest), tswap32(gw), flags, refcnt, use,
8296 metric, tswap32(mask), mtu, window, irtt);
8297 }
8298
8299 free(line);
8300 fclose(fp);
8301
8302 return 0;
8303}
8304#endif
8305
b8002058 8306int do_guest_openat(CPUArchState *cpu_env, int dirfd, const char *fname,
35be898e 8307 int flags, mode_t mode, bool safe)
3be14d05 8308{
b8002058
HD
8309 g_autofree char *proc_name = NULL;
8310 const char *pathname;
3be14d05
AG
8311 struct fake_open {
8312 const char *filename;
a0939b89 8313 int (*fill)(CPUArchState *cpu_env, int fd);
de6b9933 8314 int (*cmp)(const char *s1, const char *s2);
3be14d05
AG
8315 };
8316 const struct fake_open *fake_open;
8317 static const struct fake_open fakes[] = {
de6b9933 8318 { "maps", open_self_maps, is_proc_myself },
77ae5761 8319 { "smaps", open_self_smaps, is_proc_myself },
de6b9933
LV
8320 { "stat", open_self_stat, is_proc_myself },
8321 { "auxv", open_self_auxv, is_proc_myself },
76b94245 8322 { "cmdline", open_self_cmdline, is_proc_myself },
ee3eb3a7 8323#if HOST_BIG_ENDIAN != TARGET_BIG_ENDIAN
de6b9933 8324 { "/proc/net/route", open_net_route, is_proc },
fff69382 8325#endif
121c8dd6 8326#if defined(HAVE_ARCH_PROC_CPUINFO)
fff69382 8327 { "/proc/cpuinfo", open_cpuinfo, is_proc },
4ab6713e 8328#endif
121c8dd6 8329#if defined(HAVE_ARCH_PROC_HARDWARE)
4ab6713e 8330 { "/proc/hardware", open_hardware, is_proc },
de6b9933
LV
8331#endif
8332 { NULL, NULL, NULL }
3be14d05
AG
8333 };
8334
b8002058
HD
8335 /* if this is a file from /proc/ filesystem, expand full name */
8336 proc_name = realpath(fname, NULL);
8337 if (proc_name && strncmp(proc_name, "/proc/", 6) == 0) {
8338 pathname = proc_name;
8339 } else {
8340 pathname = fname;
8341 }
8342
aa07f5ec 8343 if (is_proc_myself(pathname, "exe")) {
35be898e
IL
8344 if (safe) {
8345 return safe_openat(dirfd, exec_path, flags, mode);
8346 } else {
8347 return openat(dirfd, exec_path, flags, mode);
8348 }
aa07f5ec
MO
8349 }
8350
3be14d05 8351 for (fake_open = fakes; fake_open->filename; fake_open++) {
de6b9933 8352 if (fake_open->cmp(pathname, fake_open->filename)) {
3be14d05
AG
8353 break;
8354 }
8355 }
8356
8357 if (fake_open->filename) {
8358 const char *tmpdir;
8359 char filename[PATH_MAX];
8360 int fd, r;
8361
5b63de6b 8362 fd = memfd_create("qemu-open", 0);
3be14d05 8363 if (fd < 0) {
5b63de6b
RM
8364 if (errno != ENOSYS) {
8365 return fd;
8366 }
8367 /* create temporary file to map stat to */
8368 tmpdir = getenv("TMPDIR");
8369 if (!tmpdir)
8370 tmpdir = "/tmp";
8371 snprintf(filename, sizeof(filename), "%s/qemu-open.XXXXXX", tmpdir);
8372 fd = mkstemp(filename);
8373 if (fd < 0) {
8374 return fd;
8375 }
8376 unlink(filename);
3be14d05 8377 }
3be14d05
AG
8378
8379 if ((r = fake_open->fill(cpu_env, fd))) {
a3ca7bb2 8380 int e = errno;
3be14d05 8381 close(fd);
a3ca7bb2 8382 errno = e;
3be14d05
AG
8383 return r;
8384 }
8385 lseek(fd, 0, SEEK_SET);
8386
8387 return fd;
8388 }
8389
35be898e
IL
8390 if (safe) {
8391 return safe_openat(dirfd, path(pathname), flags, mode);
8392 } else {
8393 return openat(dirfd, path(pathname), flags, mode);
8394 }
3be14d05
AG
8395}
8396
a4dab0a0
IL
8397ssize_t do_guest_readlink(const char *pathname, char *buf, size_t bufsiz)
8398{
8399 ssize_t ret;
8400
8401 if (!pathname || !buf) {
8402 errno = EFAULT;
8403 return -1;
8404 }
8405
8406 if (!bufsiz) {
8407 /* Short circuit this for the magic exe check. */
8408 errno = EINVAL;
8409 return -1;
8410 }
8411
8412 if (is_proc_myself((const char *)pathname, "exe")) {
8413 /*
8414 * Don't worry about sign mismatch as earlier mapping
8415 * logic would have thrown a bad address error.
8416 */
8417 ret = MIN(strlen(exec_path), bufsiz);
8418 /* We cannot NUL terminate the string. */
8419 memcpy(buf, exec_path, ret);
8420 } else {
8421 ret = readlink(path(pathname), buf, bufsiz);
8422 }
8423
8424 return ret;
8425}
8426
7a8d9f3a
PB
8427static int do_execv(CPUArchState *cpu_env, int dirfd,
8428 abi_long pathname, abi_long guest_argp,
8429 abi_long guest_envp, int flags, bool is_execveat)
156e1f67
DD
8430{
8431 int ret;
8432 char **argp, **envp;
8433 int argc, envc;
8434 abi_ulong gp;
8435 abi_ulong addr;
8436 char **q;
8437 void *p;
8438
8439 argc = 0;
8440
8441 for (gp = guest_argp; gp; gp += sizeof(abi_ulong)) {
8442 if (get_user_ual(addr, gp)) {
8443 return -TARGET_EFAULT;
8444 }
8445 if (!addr) {
8446 break;
8447 }
8448 argc++;
8449 }
8450 envc = 0;
8451 for (gp = guest_envp; gp; gp += sizeof(abi_ulong)) {
8452 if (get_user_ual(addr, gp)) {
8453 return -TARGET_EFAULT;
8454 }
8455 if (!addr) {
8456 break;
8457 }
8458 envc++;
8459 }
8460
8461 argp = g_new0(char *, argc + 1);
8462 envp = g_new0(char *, envc + 1);
8463
8464 for (gp = guest_argp, q = argp; gp; gp += sizeof(abi_ulong), q++) {
8465 if (get_user_ual(addr, gp)) {
8466 goto execve_efault;
8467 }
8468 if (!addr) {
8469 break;
8470 }
8471 *q = lock_user_string(addr);
8472 if (!*q) {
8473 goto execve_efault;
8474 }
8475 }
8476 *q = NULL;
8477
8478 for (gp = guest_envp, q = envp; gp; gp += sizeof(abi_ulong), q++) {
8479 if (get_user_ual(addr, gp)) {
8480 goto execve_efault;
8481 }
8482 if (!addr) {
8483 break;
8484 }
8485 *q = lock_user_string(addr);
8486 if (!*q) {
8487 goto execve_efault;
8488 }
8489 }
8490 *q = NULL;
8491
8492 /*
8493 * Although execve() is not an interruptible syscall it is
8494 * a special case where we must use the safe_syscall wrapper:
8495 * if we allow a signal to happen before we make the host
8496 * syscall then we will 'lose' it, because at the point of
8497 * execve the process leaves QEMU's control. So we use the
8498 * safe syscall wrapper to ensure that we either take the
8499 * signal as a guest signal, or else it does not happen
8500 * before the execve completes and makes it the other
8501 * program's problem.
8502 */
8503 p = lock_user_string(pathname);
8504 if (!p) {
8505 goto execve_efault;
8506 }
8507
7a8d9f3a 8508 const char *exe = p;
156e1f67 8509 if (is_proc_myself(p, "exe")) {
7a8d9f3a 8510 exe = exec_path;
156e1f67 8511 }
7a8d9f3a
PB
8512 ret = is_execveat
8513 ? safe_execveat(dirfd, exe, argp, envp, flags)
8514 : safe_execve(exe, argp, envp);
8515 ret = get_errno(ret);
156e1f67
DD
8516
8517 unlock_user(p, pathname, 0);
8518
8519 goto execve_end;
8520
8521execve_efault:
8522 ret = -TARGET_EFAULT;
8523
8524execve_end:
8525 for (gp = guest_argp, q = argp; *q; gp += sizeof(abi_ulong), q++) {
8526 if (get_user_ual(addr, gp) || !addr) {
8527 break;
8528 }
8529 unlock_user(*q, addr, 0);
8530 }
8531 for (gp = guest_envp, q = envp; *q; gp += sizeof(abi_ulong), q++) {
8532 if (get_user_ual(addr, gp) || !addr) {
8533 break;
8534 }
8535 unlock_user(*q, addr, 0);
8536 }
8537
8538 g_free(argp);
8539 g_free(envp);
8540 return ret;
8541}
8542
aecc8861
AG
8543#define TIMER_MAGIC 0x0caf0000
8544#define TIMER_MAGIC_MASK 0xffff0000
8545
8546/* Convert QEMU provided timer ID back to internal 16bit index format */
8547static target_timer_t get_timer_id(abi_long arg)
8548{
8549 target_timer_t timerid = arg;
8550
8551 if ((timerid & TIMER_MAGIC_MASK) != TIMER_MAGIC) {
8552 return -TARGET_EINVAL;
8553 }
8554
8555 timerid &= 0xffff;
8556
8557 if (timerid >= ARRAY_SIZE(g_posix_timers)) {
8558 return -TARGET_EINVAL;
8559 }
8560
8561 return timerid;
8562}
8563
2e0a8713
ST
8564static int target_to_host_cpu_mask(unsigned long *host_mask,
8565 size_t host_size,
8566 abi_ulong target_addr,
8567 size_t target_size)
8568{
8569 unsigned target_bits = sizeof(abi_ulong) * 8;
8570 unsigned host_bits = sizeof(*host_mask) * 8;
8571 abi_ulong *target_mask;
8572 unsigned i, j;
8573
8574 assert(host_size >= target_size);
8575
8576 target_mask = lock_user(VERIFY_READ, target_addr, target_size, 1);
8577 if (!target_mask) {
8578 return -TARGET_EFAULT;
8579 }
8580 memset(host_mask, 0, host_size);
8581
8582 for (i = 0 ; i < target_size / sizeof(abi_ulong); i++) {
8583 unsigned bit = i * target_bits;
8584 abi_ulong val;
8585
8586 __get_user(val, &target_mask[i]);
8587 for (j = 0; j < target_bits; j++, bit++) {
8588 if (val & (1UL << j)) {
8589 host_mask[bit / host_bits] |= 1UL << (bit % host_bits);
8590 }
8591 }
8592 }
8593
8594 unlock_user(target_mask, target_addr, 0);
8595 return 0;
8596}
8597
8598static int host_to_target_cpu_mask(const unsigned long *host_mask,
8599 size_t host_size,
8600 abi_ulong target_addr,
8601 size_t target_size)
8602{
8603 unsigned target_bits = sizeof(abi_ulong) * 8;
8604 unsigned host_bits = sizeof(*host_mask) * 8;
8605 abi_ulong *target_mask;
8606 unsigned i, j;
8607
8608 assert(host_size >= target_size);
8609
8610 target_mask = lock_user(VERIFY_WRITE, target_addr, target_size, 0);
8611 if (!target_mask) {
8612 return -TARGET_EFAULT;
8613 }
8614
8615 for (i = 0 ; i < target_size / sizeof(abi_ulong); i++) {
8616 unsigned bit = i * target_bits;
8617 abi_ulong val = 0;
8618
8619 for (j = 0; j < target_bits; j++, bit++) {
8620 if (host_mask[bit / host_bits] & (1UL << (bit % host_bits))) {
8621 val |= 1UL << j;
8622 }
8623 }
8624 __put_user(val, &target_mask[i]);
8625 }
8626
8627 unlock_user(target_mask, target_addr, target_size);
8628 return 0;
8629}
8630
fd08ddb9 8631#ifdef TARGET_NR_getdents
aee14c77 8632static int do_getdents(abi_long dirfd, abi_long arg2, abi_long count)
fd08ddb9 8633{
aee14c77
RH
8634 g_autofree void *hdirp = NULL;
8635 void *tdirp;
8636 int hlen, hoff, toff;
8637 int hreclen, treclen;
8638 off64_t prev_diroff = 0;
8639
8640 hdirp = g_try_malloc(count);
8641 if (!hdirp) {
8642 return -TARGET_ENOMEM;
8643 }
fd08ddb9
RH
8644
8645#ifdef EMULATE_GETDENTS_WITH_GETDENTS
aee14c77
RH
8646 hlen = sys_getdents(dirfd, hdirp, count);
8647#else
8648 hlen = sys_getdents64(dirfd, hdirp, count);
8649#endif
fd08ddb9 8650
aee14c77
RH
8651 hlen = get_errno(hlen);
8652 if (is_error(hlen)) {
8653 return hlen;
fd08ddb9
RH
8654 }
8655
aee14c77
RH
8656 tdirp = lock_user(VERIFY_WRITE, arg2, count, 0);
8657 if (!tdirp) {
fd08ddb9
RH
8658 return -TARGET_EFAULT;
8659 }
aee14c77
RH
8660
8661 for (hoff = toff = 0; hoff < hlen; hoff += hreclen, toff += treclen) {
8662#ifdef EMULATE_GETDENTS_WITH_GETDENTS
8663 struct linux_dirent *hde = hdirp + hoff;
fd08ddb9 8664#else
aee14c77
RH
8665 struct linux_dirent64 *hde = hdirp + hoff;
8666#endif
8667 struct target_dirent *tde = tdirp + toff;
8668 int namelen;
8669 uint8_t type;
fd08ddb9 8670
aee14c77
RH
8671 namelen = strlen(hde->d_name);
8672 hreclen = hde->d_reclen;
8673 treclen = offsetof(struct target_dirent, d_name) + namelen + 2;
8674 treclen = QEMU_ALIGN_UP(treclen, __alignof(struct target_dirent));
fd08ddb9 8675
aee14c77 8676 if (toff + treclen > count) {
fd08ddb9 8677 /*
aee14c77
RH
8678 * If the host struct is smaller than the target struct, or
8679 * requires less alignment and thus packs into less space,
8680 * then the host can return more entries than we can pass
8681 * on to the guest.
fd08ddb9 8682 */
aee14c77
RH
8683 if (toff == 0) {
8684 toff = -TARGET_EINVAL; /* result buffer is too small */
8685 break;
8686 }
8687 /*
8688 * Return what we have, resetting the file pointer to the
8689 * location of the first record not returned.
8690 */
8691 lseek64(dirfd, prev_diroff, SEEK_SET);
8692 break;
fd08ddb9 8693 }
aee14c77
RH
8694
8695 prev_diroff = hde->d_off;
8696 tde->d_ino = tswapal(hde->d_ino);
8697 tde->d_off = tswapal(hde->d_off);
8698 tde->d_reclen = tswap16(treclen);
8699 memcpy(tde->d_name, hde->d_name, namelen + 1);
8700
8701 /*
8702 * The getdents type is in what was formerly a padding byte at the
8703 * end of the structure.
8704 */
8705#ifdef EMULATE_GETDENTS_WITH_GETDENTS
8706 type = *((uint8_t *)hde + hreclen - 1);
8707#else
8708 type = hde->d_type;
fd08ddb9 8709#endif
aee14c77
RH
8710 *((uint8_t *)tde + treclen - 1) = type;
8711 }
8712
8713 unlock_user(tdirp, arg2, toff);
8714 return toff;
fd08ddb9
RH
8715}
8716#endif /* TARGET_NR_getdents */
8717
8718#if defined(TARGET_NR_getdents64) && defined(__NR_getdents64)
aee14c77 8719static int do_getdents64(abi_long dirfd, abi_long arg2, abi_long count)
fd08ddb9 8720{
aee14c77
RH
8721 g_autofree void *hdirp = NULL;
8722 void *tdirp;
8723 int hlen, hoff, toff;
8724 int hreclen, treclen;
8725 off64_t prev_diroff = 0;
8726
8727 hdirp = g_try_malloc(count);
8728 if (!hdirp) {
8729 return -TARGET_ENOMEM;
8730 }
fd08ddb9 8731
aee14c77
RH
8732 hlen = get_errno(sys_getdents64(dirfd, hdirp, count));
8733 if (is_error(hlen)) {
8734 return hlen;
8735 }
8736
8737 tdirp = lock_user(VERIFY_WRITE, arg2, count, 0);
8738 if (!tdirp) {
fd08ddb9
RH
8739 return -TARGET_EFAULT;
8740 }
aee14c77
RH
8741
8742 for (hoff = toff = 0; hoff < hlen; hoff += hreclen, toff += treclen) {
8743 struct linux_dirent64 *hde = hdirp + hoff;
8744 struct target_dirent64 *tde = tdirp + toff;
8745 int namelen;
8746
8747 namelen = strlen(hde->d_name) + 1;
8748 hreclen = hde->d_reclen;
8749 treclen = offsetof(struct target_dirent64, d_name) + namelen;
8750 treclen = QEMU_ALIGN_UP(treclen, __alignof(struct target_dirent64));
8751
8752 if (toff + treclen > count) {
8753 /*
8754 * If the host struct is smaller than the target struct, or
8755 * requires less alignment and thus packs into less space,
8756 * then the host can return more entries than we can pass
8757 * on to the guest.
8758 */
8759 if (toff == 0) {
8760 toff = -TARGET_EINVAL; /* result buffer is too small */
fd08ddb9
RH
8761 break;
8762 }
aee14c77
RH
8763 /*
8764 * Return what we have, resetting the file pointer to the
8765 * location of the first record not returned.
8766 */
8767 lseek64(dirfd, prev_diroff, SEEK_SET);
8768 break;
fd08ddb9 8769 }
aee14c77
RH
8770
8771 prev_diroff = hde->d_off;
8772 tde->d_ino = tswap64(hde->d_ino);
8773 tde->d_off = tswap64(hde->d_off);
8774 tde->d_reclen = tswap16(treclen);
8775 tde->d_type = hde->d_type;
8776 memcpy(tde->d_name, hde->d_name, namelen);
fd08ddb9 8777 }
aee14c77
RH
8778
8779 unlock_user(tdirp, arg2, toff);
8780 return toff;
fd08ddb9
RH
8781}
8782#endif /* TARGET_NR_getdents64 */
8783
9e1c7d98
RE
8784#if defined(TARGET_NR_riscv_hwprobe)
8785
8786#define RISCV_HWPROBE_KEY_MVENDORID 0
8787#define RISCV_HWPROBE_KEY_MARCHID 1
8788#define RISCV_HWPROBE_KEY_MIMPID 2
8789
8790#define RISCV_HWPROBE_KEY_BASE_BEHAVIOR 3
8791#define RISCV_HWPROBE_BASE_BEHAVIOR_IMA (1 << 0)
8792
8793#define RISCV_HWPROBE_KEY_IMA_EXT_0 4
8794#define RISCV_HWPROBE_IMA_FD (1 << 0)
8795#define RISCV_HWPROBE_IMA_C (1 << 1)
bb0a45e9
RE
8796#define RISCV_HWPROBE_IMA_V (1 << 2)
8797#define RISCV_HWPROBE_EXT_ZBA (1 << 3)
8798#define RISCV_HWPROBE_EXT_ZBB (1 << 4)
8799#define RISCV_HWPROBE_EXT_ZBS (1 << 5)
9e1c7d98
RE
8800
8801#define RISCV_HWPROBE_KEY_CPUPERF_0 5
8802#define RISCV_HWPROBE_MISALIGNED_UNKNOWN (0 << 0)
8803#define RISCV_HWPROBE_MISALIGNED_EMULATED (1 << 0)
8804#define RISCV_HWPROBE_MISALIGNED_SLOW (2 << 0)
8805#define RISCV_HWPROBE_MISALIGNED_FAST (3 << 0)
8806#define RISCV_HWPROBE_MISALIGNED_UNSUPPORTED (4 << 0)
8807#define RISCV_HWPROBE_MISALIGNED_MASK (7 << 0)
8808
8809struct riscv_hwprobe {
8810 abi_llong key;
8811 abi_ullong value;
8812};
8813
8814static void risc_hwprobe_fill_pairs(CPURISCVState *env,
8815 struct riscv_hwprobe *pair,
8816 size_t pair_count)
8817{
8818 const RISCVCPUConfig *cfg = riscv_cpu_cfg(env);
8819
8820 for (; pair_count > 0; pair_count--, pair++) {
8821 abi_llong key;
8822 abi_ullong value;
8823 __put_user(0, &pair->value);
8824 __get_user(key, &pair->key);
8825 switch (key) {
8826 case RISCV_HWPROBE_KEY_MVENDORID:
8827 __put_user(cfg->mvendorid, &pair->value);
8828 break;
8829 case RISCV_HWPROBE_KEY_MARCHID:
8830 __put_user(cfg->marchid, &pair->value);
8831 break;
8832 case RISCV_HWPROBE_KEY_MIMPID:
8833 __put_user(cfg->mimpid, &pair->value);
8834 break;
8835 case RISCV_HWPROBE_KEY_BASE_BEHAVIOR:
8836 value = riscv_has_ext(env, RVI) &&
8837 riscv_has_ext(env, RVM) &&
8838 riscv_has_ext(env, RVA) ?
8839 RISCV_HWPROBE_BASE_BEHAVIOR_IMA : 0;
8840 __put_user(value, &pair->value);
8841 break;
8842 case RISCV_HWPROBE_KEY_IMA_EXT_0:
8843 value = riscv_has_ext(env, RVF) &&
8844 riscv_has_ext(env, RVD) ?
8845 RISCV_HWPROBE_IMA_FD : 0;
8846 value |= riscv_has_ext(env, RVC) ?
bb0a45e9
RE
8847 RISCV_HWPROBE_IMA_C : 0;
8848 value |= riscv_has_ext(env, RVV) ?
8849 RISCV_HWPROBE_IMA_V : 0;
8850 value |= cfg->ext_zba ?
8851 RISCV_HWPROBE_EXT_ZBA : 0;
8852 value |= cfg->ext_zbb ?
8853 RISCV_HWPROBE_EXT_ZBB : 0;
8854 value |= cfg->ext_zbs ?
8855 RISCV_HWPROBE_EXT_ZBS : 0;
9e1c7d98
RE
8856 __put_user(value, &pair->value);
8857 break;
8858 case RISCV_HWPROBE_KEY_CPUPERF_0:
8859 __put_user(RISCV_HWPROBE_MISALIGNED_FAST, &pair->value);
8860 break;
8861 default:
8862 __put_user(-1, &pair->key);
8863 break;
8864 }
8865 }
8866}
8867
8868static int cpu_set_valid(abi_long arg3, abi_long arg4)
8869{
8870 int ret, i, tmp;
8871 size_t host_mask_size, target_mask_size;
8872 unsigned long *host_mask;
8873
8874 /*
8875 * cpu_set_t represent CPU masks as bit masks of type unsigned long *.
8876 * arg3 contains the cpu count.
8877 */
8878 tmp = (8 * sizeof(abi_ulong));
8879 target_mask_size = ((arg3 + tmp - 1) / tmp) * sizeof(abi_ulong);
8880 host_mask_size = (target_mask_size + (sizeof(*host_mask) - 1)) &
8881 ~(sizeof(*host_mask) - 1);
8882
8883 host_mask = alloca(host_mask_size);
8884
8885 ret = target_to_host_cpu_mask(host_mask, host_mask_size,
8886 arg4, target_mask_size);
8887 if (ret != 0) {
8888 return ret;
8889 }
8890
8891 for (i = 0 ; i < host_mask_size / sizeof(*host_mask); i++) {
8892 if (host_mask[i] != 0) {
8893 return 0;
8894 }
8895 }
8896 return -TARGET_EINVAL;
8897}
8898
8899static abi_long do_riscv_hwprobe(CPUArchState *cpu_env, abi_long arg1,
8900 abi_long arg2, abi_long arg3,
8901 abi_long arg4, abi_long arg5)
8902{
8903 int ret;
8904 struct riscv_hwprobe *host_pairs;
8905
8906 /* flags must be 0 */
8907 if (arg5 != 0) {
8908 return -TARGET_EINVAL;
8909 }
8910
8911 /* check cpu_set */
8912 if (arg3 != 0) {
8913 ret = cpu_set_valid(arg3, arg4);
8914 if (ret != 0) {
8915 return ret;
8916 }
8917 } else if (arg4 != 0) {
8918 return -TARGET_EINVAL;
8919 }
8920
8921 /* no pairs */
8922 if (arg2 == 0) {
8923 return 0;
8924 }
8925
8926 host_pairs = lock_user(VERIFY_WRITE, arg1,
8927 sizeof(*host_pairs) * (size_t)arg2, 0);
8928 if (host_pairs == NULL) {
8929 return -TARGET_EFAULT;
8930 }
8931 risc_hwprobe_fill_pairs(cpu_env, host_pairs, arg2);
8932 unlock_user(host_pairs, arg1, sizeof(*host_pairs) * (size_t)arg2);
8933 return 0;
8934}
8935#endif /* TARGET_NR_riscv_hwprobe */
8936
e10fbe8f
YT
8937#if defined(TARGET_NR_pivot_root) && defined(__NR_pivot_root)
8938_syscall2(int, pivot_root, const char *, new_root, const char *, put_old)
8939#endif
8940
7f696cdd
TW
8941#if defined(TARGET_NR_open_tree) && defined(__NR_open_tree)
8942#define __NR_sys_open_tree __NR_open_tree
8943_syscall3(int, sys_open_tree, int, __dfd, const char *, __filename,
8944 unsigned int, __flags)
8945#endif
8946
4b2d2753
TW
8947#if defined(TARGET_NR_move_mount) && defined(__NR_move_mount)
8948#define __NR_sys_move_mount __NR_move_mount
8949_syscall5(int, sys_move_mount, int, __from_dfd, const char *, __from_pathname,
8950 int, __to_dfd, const char *, __to_pathname, unsigned int, flag)
8951#endif
8952
dc1ce18b
RH
8953/* This is an internal helper for do_syscall so that it is easier
8954 * to have a single return point, so that actions, such as logging
8955 * of syscall results, can be performed.
8956 * All errnos that do_syscall() returns must be -TARGET_<errcode>.
8957 */
a0939b89 8958static abi_long do_syscall1(CPUArchState *cpu_env, int num, abi_long arg1,
dc1ce18b
RH
8959 abi_long arg2, abi_long arg3, abi_long arg4,
8960 abi_long arg5, abi_long arg6, abi_long arg7,
8961 abi_long arg8)
31e31b8a 8962{
29a0af61 8963 CPUState *cpu = env_cpu(cpu_env);
992f48a0 8964 abi_long ret;
4f7f8924
AR
8965#if defined(TARGET_NR_stat) || defined(TARGET_NR_stat64) \
8966 || defined(TARGET_NR_lstat) || defined(TARGET_NR_lstat64) \
efa92184
AR
8967 || defined(TARGET_NR_fstat) || defined(TARGET_NR_fstat64) \
8968 || defined(TARGET_NR_statx)
31e31b8a 8969 struct stat st;
4f7f8924
AR
8970#endif
8971#if defined(TARGET_NR_statfs) || defined(TARGET_NR_statfs64) \
8972 || defined(TARGET_NR_fstatfs)
56c8f68f 8973 struct statfs stfs;
4f7f8924 8974#endif
53a5960a 8975 void *p;
3b46e624 8976
31e31b8a
FB
8977 switch(num) {
8978 case TARGET_NR_exit:
9b056fcc 8979 /* In old applications this may be used to implement _exit(2).
6f9ff551 8980 However in threaded applications it is used for thread termination,
9b056fcc
AF
8981 and _exit_group is used for application termination.
8982 Do thread termination if we have more then one thread. */
a0995886
TB
8983
8984 if (block_signals()) {
af254a27 8985 return -QEMU_ERESTARTSYS;
a0995886
TB
8986 }
8987
1f81ce90 8988 pthread_mutex_lock(&clone_lock);
dd1f6349 8989
bdc44640 8990 if (CPU_NEXT(first_cpu)) {
1f81ce90 8991 TaskState *ts = cpu->opaque;
9b056fcc 8992
6490d9aa
RH
8993 if (ts->child_tidptr) {
8994 put_user_u32(0, ts->child_tidptr);
8995 do_sys_futex(g2h(cpu, ts->child_tidptr),
8996 FUTEX_WAKE, INT_MAX, NULL, NULL, 0);
8997 }
8998
8999 object_unparent(OBJECT(cpu));
1f81ce90
AB
9000 object_unref(OBJECT(cpu));
9001 /*
9002 * At this point the CPU should be unrealized and removed
9003 * from cpu lists. We can clean-up the rest of the thread
9004 * data without the lock held.
9005 */
dd1f6349 9006
1f81ce90 9007 pthread_mutex_unlock(&clone_lock);
dd1f6349 9008
a2247f8e 9009 thread_cpu = NULL;
9b056fcc 9010 g_free(ts);
70903763 9011 rcu_unregister_thread();
9b056fcc
AF
9012 pthread_exit(NULL);
9013 }
dd1f6349 9014
1f81ce90 9015 pthread_mutex_unlock(&clone_lock);
708b6a64 9016 preexit_cleanup(cpu_env, arg1);
c2764719 9017 _exit(arg1);
72eb7ea8 9018 return 0; /* avoid warning */
31e31b8a 9019 case TARGET_NR_read:
ba584f1d
AS
9020 if (arg2 == 0 && arg3 == 0) {
9021 return get_errno(safe_read(arg1, 0, 0));
72eb7ea8 9022 } else {
38d840e6 9023 if (!(p = lock_user(VERIFY_WRITE, arg2, arg3, 0)))
2852aafd 9024 return -TARGET_EFAULT;
50afd02b 9025 ret = get_errno(safe_read(arg1, p, arg3));
e36800c9 9026 if (ret >= 0 &&
5d4d3665
LV
9027 fd_trans_host_to_target_data(arg1)) {
9028 ret = fd_trans_host_to_target_data(arg1)(p, ret);
e36800c9 9029 }
38d840e6
AJ
9030 unlock_user(p, arg2, ret);
9031 }
72eb7ea8 9032 return ret;
31e31b8a 9033 case TARGET_NR_write:
58cfa6c2
TGJ
9034 if (arg2 == 0 && arg3 == 0) {
9035 return get_errno(safe_write(arg1, 0, 0));
9036 }
579a97f7 9037 if (!(p = lock_user(VERIFY_READ, arg2, arg3, 1)))
2852aafd 9038 return -TARGET_EFAULT;
04b9bcf9
LV
9039 if (fd_trans_target_to_host_data(arg1)) {
9040 void *copy = g_malloc(arg3);
9041 memcpy(copy, p, arg3);
9042 ret = fd_trans_target_to_host_data(arg1)(copy, arg3);
9043 if (ret >= 0) {
9044 ret = get_errno(safe_write(arg1, copy, ret));
9045 }
9046 g_free(copy);
9047 } else {
9048 ret = get_errno(safe_write(arg1, p, arg3));
9049 }
53a5960a 9050 unlock_user(p, arg2, 0);
72eb7ea8
RH
9051 return ret;
9052
704eff6c 9053#ifdef TARGET_NR_open
31e31b8a 9054 case TARGET_NR_open:
2f619698 9055 if (!(p = lock_user_string(arg1)))
2852aafd 9056 return -TARGET_EFAULT;
a4dab0a0 9057 ret = get_errno(do_guest_openat(cpu_env, AT_FDCWD, p,
0b2effd7 9058 target_to_host_bitmask(arg2, fcntl_flags_tbl),
35be898e 9059 arg3, true));
e36800c9 9060 fd_trans_unregister(ret);
53a5960a 9061 unlock_user(p, arg1, 0);
72eb7ea8 9062 return ret;
704eff6c 9063#endif
82424832 9064 case TARGET_NR_openat:
579a97f7 9065 if (!(p = lock_user_string(arg2)))
2852aafd 9066 return -TARGET_EFAULT;
a4dab0a0 9067 ret = get_errno(do_guest_openat(cpu_env, arg1, p,
0b2effd7 9068 target_to_host_bitmask(arg3, fcntl_flags_tbl),
35be898e 9069 arg4, true));
e36800c9 9070 fd_trans_unregister(ret);
579a97f7 9071 unlock_user(p, arg2, 0);
72eb7ea8 9072 return ret;
0f0426f3
LV
9073#if defined(TARGET_NR_name_to_handle_at) && defined(CONFIG_OPEN_BY_HANDLE)
9074 case TARGET_NR_name_to_handle_at:
9075 ret = do_name_to_handle_at(arg1, arg2, arg3, arg4, arg5);
72eb7ea8 9076 return ret;
0f0426f3
LV
9077#endif
9078#if defined(TARGET_NR_open_by_handle_at) && defined(CONFIG_OPEN_BY_HANDLE)
9079 case TARGET_NR_open_by_handle_at:
9080 ret = do_open_by_handle_at(arg1, arg2, arg3);
e36800c9 9081 fd_trans_unregister(ret);
72eb7ea8 9082 return ret;
cc054c6f
HD
9083#endif
9084#if defined(__NR_pidfd_open) && defined(TARGET_NR_pidfd_open)
9085 case TARGET_NR_pidfd_open:
9086 return get_errno(pidfd_open(arg1, arg2));
9087#endif
9088#if defined(__NR_pidfd_send_signal) && defined(TARGET_NR_pidfd_send_signal)
9089 case TARGET_NR_pidfd_send_signal:
9090 {
46187d70 9091 siginfo_t uinfo, *puinfo;
cc054c6f 9092
46187d70
LV
9093 if (arg3) {
9094 p = lock_user(VERIFY_READ, arg3, sizeof(target_siginfo_t), 1);
9095 if (!p) {
9096 return -TARGET_EFAULT;
9097 }
9098 target_to_host_siginfo(&uinfo, p);
9099 unlock_user(p, arg3, 0);
9100 puinfo = &uinfo;
9101 } else {
9102 puinfo = NULL;
cc054c6f 9103 }
cc054c6f 9104 ret = get_errno(pidfd_send_signal(arg1, target_to_host_signal(arg2),
46187d70 9105 puinfo, arg4));
cc054c6f
HD
9106 }
9107 return ret;
9108#endif
9109#if defined(__NR_pidfd_getfd) && defined(TARGET_NR_pidfd_getfd)
9110 case TARGET_NR_pidfd_getfd:
9111 return get_errno(pidfd_getfd(arg1, arg2, arg3));
0f0426f3 9112#endif
31e31b8a 9113 case TARGET_NR_close:
e36800c9 9114 fd_trans_unregister(arg1);
72eb7ea8 9115 return get_errno(close(arg1));
af804f39
HD
9116#if defined(__NR_close_range) && defined(TARGET_NR_close_range)
9117 case TARGET_NR_close_range:
9118 ret = get_errno(sys_close_range(arg1, arg2, arg3));
9119 if (ret == 0 && !(arg3 & CLOSE_RANGE_CLOEXEC)) {
9120 abi_long fd, maxfd;
9121 maxfd = MIN(arg2, target_fd_max);
9122 for (fd = arg1; fd < maxfd; fd++) {
9123 fd_trans_unregister(fd);
9124 }
9125 }
9126 return ret;
9127#endif
72eb7ea8 9128
31e31b8a 9129 case TARGET_NR_brk:
72eb7ea8 9130 return do_brk(arg1);
704eff6c 9131#ifdef TARGET_NR_fork
31e31b8a 9132 case TARGET_NR_fork:
72eb7ea8 9133 return get_errno(do_fork(cpu_env, TARGET_SIGCHLD, 0, 0, 0, 0));
704eff6c 9134#endif
e5febef5 9135#ifdef TARGET_NR_waitpid
31e31b8a
FB
9136 case TARGET_NR_waitpid:
9137 {
53a5960a 9138 int status;
4af80a37 9139 ret = get_errno(safe_wait4(arg1, &status, arg3, 0));
5379557b 9140 if (!is_error(ret) && arg2 && ret
1d9d8b55 9141 && put_user_s32(host_to_target_waitstatus(status), arg2))
2852aafd 9142 return -TARGET_EFAULT;
31e31b8a 9143 }
72eb7ea8 9144 return ret;
e5febef5 9145#endif
f0cbb613
PB
9146#ifdef TARGET_NR_waitid
9147 case TARGET_NR_waitid:
9148 {
9149 siginfo_t info;
9150 info.si_pid = 0;
4af80a37 9151 ret = get_errno(safe_waitid(arg1, arg2, &info, arg4, NULL));
f0cbb613 9152 if (!is_error(ret) && arg3 && info.si_pid != 0) {
c227f099 9153 if (!(p = lock_user(VERIFY_WRITE, arg3, sizeof(target_siginfo_t), 0)))
2852aafd 9154 return -TARGET_EFAULT;
f0cbb613 9155 host_to_target_siginfo(p, &info);
c227f099 9156 unlock_user(p, arg3, sizeof(target_siginfo_t));
f0cbb613
PB
9157 }
9158 }
72eb7ea8 9159 return ret;
f0cbb613 9160#endif
7a3148a9 9161#ifdef TARGET_NR_creat /* not on alpha */
31e31b8a 9162 case TARGET_NR_creat:
579a97f7 9163 if (!(p = lock_user_string(arg1)))
2852aafd 9164 return -TARGET_EFAULT;
53a5960a 9165 ret = get_errno(creat(p, arg2));
e36800c9 9166 fd_trans_unregister(ret);
53a5960a 9167 unlock_user(p, arg1, 0);
72eb7ea8 9168 return ret;
7a3148a9 9169#endif
704eff6c 9170#ifdef TARGET_NR_link
31e31b8a 9171 case TARGET_NR_link:
53a5960a
PB
9172 {
9173 void * p2;
9174 p = lock_user_string(arg1);
9175 p2 = lock_user_string(arg2);
579a97f7
FB
9176 if (!p || !p2)
9177 ret = -TARGET_EFAULT;
9178 else
9179 ret = get_errno(link(p, p2));
53a5960a
PB
9180 unlock_user(p2, arg2, 0);
9181 unlock_user(p, arg1, 0);
9182 }
72eb7ea8 9183 return ret;
704eff6c 9184#endif
c0d472b1 9185#if defined(TARGET_NR_linkat)
64f0ce4c 9186 case TARGET_NR_linkat:
64f0ce4c
TS
9187 {
9188 void * p2 = NULL;
579a97f7 9189 if (!arg2 || !arg4)
2852aafd 9190 return -TARGET_EFAULT;
64f0ce4c
TS
9191 p = lock_user_string(arg2);
9192 p2 = lock_user_string(arg4);
579a97f7 9193 if (!p || !p2)
0da46a6e 9194 ret = -TARGET_EFAULT;
64f0ce4c 9195 else
c0d472b1 9196 ret = get_errno(linkat(arg1, p, arg3, p2, arg5));
579a97f7
FB
9197 unlock_user(p, arg2, 0);
9198 unlock_user(p2, arg4, 0);
64f0ce4c 9199 }
72eb7ea8 9200 return ret;
64f0ce4c 9201#endif
704eff6c 9202#ifdef TARGET_NR_unlink
31e31b8a 9203 case TARGET_NR_unlink:
579a97f7 9204 if (!(p = lock_user_string(arg1)))
2852aafd 9205 return -TARGET_EFAULT;
53a5960a
PB
9206 ret = get_errno(unlink(p));
9207 unlock_user(p, arg1, 0);
72eb7ea8 9208 return ret;
704eff6c 9209#endif
c0d472b1 9210#if defined(TARGET_NR_unlinkat)
8170f56b 9211 case TARGET_NR_unlinkat:
579a97f7 9212 if (!(p = lock_user_string(arg2)))
2852aafd 9213 return -TARGET_EFAULT;
c0d472b1 9214 ret = get_errno(unlinkat(arg1, p, arg3));
579a97f7 9215 unlock_user(p, arg2, 0);
72eb7ea8 9216 return ret;
b7d35e65 9217#endif
55bbe4d5 9218 case TARGET_NR_execveat:
7a8d9f3a 9219 return do_execv(cpu_env, arg1, arg2, arg3, arg4, arg5, true);
31e31b8a 9220 case TARGET_NR_execve:
7a8d9f3a 9221 return do_execv(cpu_env, AT_FDCWD, arg1, arg2, arg3, 0, false);
31e31b8a 9222 case TARGET_NR_chdir:
579a97f7 9223 if (!(p = lock_user_string(arg1)))
2852aafd 9224 return -TARGET_EFAULT;
53a5960a
PB
9225 ret = get_errno(chdir(p));
9226 unlock_user(p, arg1, 0);
72eb7ea8 9227 return ret;
a315a145 9228#ifdef TARGET_NR_time
31e31b8a
FB
9229 case TARGET_NR_time:
9230 {
53a5960a
PB
9231 time_t host_time;
9232 ret = get_errno(time(&host_time));
2f619698
FB
9233 if (!is_error(ret)
9234 && arg1
9235 && put_user_sal(host_time, arg1))
2852aafd 9236 return -TARGET_EFAULT;
31e31b8a 9237 }
72eb7ea8 9238 return ret;
a315a145 9239#endif
704eff6c 9240#ifdef TARGET_NR_mknod
31e31b8a 9241 case TARGET_NR_mknod:
579a97f7 9242 if (!(p = lock_user_string(arg1)))
2852aafd 9243 return -TARGET_EFAULT;
53a5960a
PB
9244 ret = get_errno(mknod(p, arg2, arg3));
9245 unlock_user(p, arg1, 0);
72eb7ea8 9246 return ret;
704eff6c 9247#endif
c0d472b1 9248#if defined(TARGET_NR_mknodat)
75ac37a0 9249 case TARGET_NR_mknodat:
579a97f7 9250 if (!(p = lock_user_string(arg2)))
2852aafd 9251 return -TARGET_EFAULT;
c0d472b1 9252 ret = get_errno(mknodat(arg1, p, arg3, arg4));
579a97f7 9253 unlock_user(p, arg2, 0);
72eb7ea8 9254 return ret;
75ac37a0 9255#endif
704eff6c 9256#ifdef TARGET_NR_chmod
31e31b8a 9257 case TARGET_NR_chmod:
579a97f7 9258 if (!(p = lock_user_string(arg1)))
2852aafd 9259 return -TARGET_EFAULT;
53a5960a
PB
9260 ret = get_errno(chmod(p, arg2));
9261 unlock_user(p, arg1, 0);
72eb7ea8 9262 return ret;
704eff6c 9263#endif
4f7f8924 9264#ifdef TARGET_NR_lseek
31e31b8a 9265 case TARGET_NR_lseek:
72eb7ea8 9266 return get_errno(lseek(arg1, arg2, arg3));
4f7f8924 9267#endif
9231733a
RH
9268#if defined(TARGET_NR_getxpid) && defined(TARGET_ALPHA)
9269 /* Alpha specific */
7a3148a9 9270 case TARGET_NR_getxpid:
0effdc29 9271 cpu_env->ir[IR_A4] = getppid();
72eb7ea8 9272 return get_errno(getpid());
7a3148a9 9273#endif
9231733a
RH
9274#ifdef TARGET_NR_getpid
9275 case TARGET_NR_getpid:
72eb7ea8 9276 return get_errno(getpid());
9231733a 9277#endif
31e31b8a 9278 case TARGET_NR_mount:
356d771b
PB
9279 {
9280 /* need to look at the data field */
9281 void *p2, *p3;
9282
9283 if (arg1) {
9284 p = lock_user_string(arg1);
9285 if (!p) {
2852aafd 9286 return -TARGET_EFAULT;
356d771b
PB
9287 }
9288 } else {
9289 p = NULL;
9290 }
9291
9292 p2 = lock_user_string(arg2);
9293 if (!p2) {
9294 if (arg1) {
9295 unlock_user(p, arg1, 0);
9296 }
2852aafd 9297 return -TARGET_EFAULT;
356d771b
PB
9298 }
9299
9300 if (arg3) {
9301 p3 = lock_user_string(arg3);
9302 if (!p3) {
9303 if (arg1) {
579a97f7 9304 unlock_user(p, arg1, 0);
356d771b
PB
9305 }
9306 unlock_user(p2, arg2, 0);
2852aafd 9307 return -TARGET_EFAULT;
356d771b
PB
9308 }
9309 } else {
9310 p3 = NULL;
9311 }
9312
9313 /* FIXME - arg5 should be locked, but it isn't clear how to
9314 * do that since it's not guaranteed to be a NULL-terminated
9315 * string.
9316 */
9317 if (!arg5) {
9318 ret = mount(p, p2, p3, (unsigned long)arg4, NULL);
9319 } else {
3e8f1628 9320 ret = mount(p, p2, p3, (unsigned long)arg4, g2h(cpu, arg5));
356d771b
PB
9321 }
9322 ret = get_errno(ret);
9323
9324 if (arg1) {
9325 unlock_user(p, arg1, 0);
9326 }
9327 unlock_user(p2, arg2, 0);
9328 if (arg3) {
9329 unlock_user(p3, arg3, 0);
9330 }
9331 }
72eb7ea8 9332 return ret;
6eb9dbf6
LV
9333#if defined(TARGET_NR_umount) || defined(TARGET_NR_oldumount)
9334#if defined(TARGET_NR_umount)
31e31b8a 9335 case TARGET_NR_umount:
6eb9dbf6
LV
9336#endif
9337#if defined(TARGET_NR_oldumount)
9338 case TARGET_NR_oldumount:
9339#endif
579a97f7 9340 if (!(p = lock_user_string(arg1)))
2852aafd 9341 return -TARGET_EFAULT;
53a5960a
PB
9342 ret = get_errno(umount(p));
9343 unlock_user(p, arg1, 0);
72eb7ea8 9344 return ret;
e5febef5 9345#endif
4b2d2753
TW
9346#if defined(TARGET_NR_move_mount) && defined(__NR_move_mount)
9347 case TARGET_NR_move_mount:
9348 {
9349 void *p2, *p4;
9350
9351 if (!arg2 || !arg4) {
9352 return -TARGET_EFAULT;
9353 }
9354
9355 p2 = lock_user_string(arg2);
9356 if (!p2) {
9357 return -TARGET_EFAULT;
9358 }
9359
9360 p4 = lock_user_string(arg4);
9361 if (!p4) {
9362 unlock_user(p2, arg2, 0);
9363 return -TARGET_EFAULT;
9364 }
9365 ret = get_errno(sys_move_mount(arg1, p2, arg3, p4, arg5));
9366
9367 unlock_user(p2, arg2, 0);
9368 unlock_user(p4, arg4, 0);
9369
9370 return ret;
9371 }
9372#endif
7f696cdd
TW
9373#if defined(TARGET_NR_open_tree) && defined(__NR_open_tree)
9374 case TARGET_NR_open_tree:
9375 {
9376 void *p2;
9377 int host_flags;
9378
9379 if (!arg2) {
9380 return -TARGET_EFAULT;
9381 }
9382
9383 p2 = lock_user_string(arg2);
9384 if (!p2) {
9385 return -TARGET_EFAULT;
9386 }
9387
9388 host_flags = arg3 & ~TARGET_O_CLOEXEC;
9389 if (arg3 & TARGET_O_CLOEXEC) {
9390 host_flags |= O_CLOEXEC;
9391 }
9392
9393 ret = get_errno(sys_open_tree(arg1, p2, host_flags));
9394
9395 unlock_user(p2, arg2, 0);
9396
9397 return ret;
9398 }
9399#endif
7a3148a9 9400#ifdef TARGET_NR_stime /* not on alpha */
31e31b8a
FB
9401 case TARGET_NR_stime:
9402 {
0f1f2d45
LV
9403 struct timespec ts;
9404 ts.tv_nsec = 0;
9405 if (get_user_sal(ts.tv_sec, arg1)) {
2852aafd 9406 return -TARGET_EFAULT;
0f1f2d45
LV
9407 }
9408 return get_errno(clock_settime(CLOCK_REALTIME, &ts));
31e31b8a 9409 }
7a3148a9 9410#endif
7a3148a9 9411#ifdef TARGET_NR_alarm /* not on alpha */
31e31b8a 9412 case TARGET_NR_alarm:
72eb7ea8 9413 return alarm(arg1);
7a3148a9 9414#endif
7a3148a9 9415#ifdef TARGET_NR_pause /* not on alpha */
31e31b8a 9416 case TARGET_NR_pause:
f59ec606
TB
9417 if (!block_signals()) {
9418 sigsuspend(&((TaskState *)cpu->opaque)->signal_mask);
9419 }
72eb7ea8 9420 return -TARGET_EINTR;
7a3148a9 9421#endif
e5febef5 9422#ifdef TARGET_NR_utime
31e31b8a 9423 case TARGET_NR_utime:
ebc05488 9424 {
53a5960a
PB
9425 struct utimbuf tbuf, *host_tbuf;
9426 struct target_utimbuf *target_tbuf;
9427 if (arg2) {
579a97f7 9428 if (!lock_user_struct(VERIFY_READ, target_tbuf, arg2, 1))
2852aafd 9429 return -TARGET_EFAULT;
cbb21eed
MB
9430 tbuf.actime = tswapal(target_tbuf->actime);
9431 tbuf.modtime = tswapal(target_tbuf->modtime);
53a5960a
PB
9432 unlock_user_struct(target_tbuf, arg2, 0);
9433 host_tbuf = &tbuf;
f72e8ff4 9434 } else {
53a5960a 9435 host_tbuf = NULL;
f72e8ff4 9436 }
579a97f7 9437 if (!(p = lock_user_string(arg1)))
2852aafd 9438 return -TARGET_EFAULT;
53a5960a
PB
9439 ret = get_errno(utime(p, host_tbuf));
9440 unlock_user(p, arg1, 0);
ebc05488 9441 }
72eb7ea8 9442 return ret;
e5febef5 9443#endif
704eff6c 9444#ifdef TARGET_NR_utimes
978a66ff
FB
9445 case TARGET_NR_utimes:
9446 {
978a66ff 9447 struct timeval *tvp, tv[2];
53a5960a 9448 if (arg2) {
788f5ec4
TS
9449 if (copy_from_user_timeval(&tv[0], arg2)
9450 || copy_from_user_timeval(&tv[1],
9451 arg2 + sizeof(struct target_timeval)))
2852aafd 9452 return -TARGET_EFAULT;
978a66ff
FB
9453 tvp = tv;
9454 } else {
9455 tvp = NULL;
9456 }
579a97f7 9457 if (!(p = lock_user_string(arg1)))
2852aafd 9458 return -TARGET_EFAULT;
53a5960a
PB
9459 ret = get_errno(utimes(p, tvp));
9460 unlock_user(p, arg1, 0);
978a66ff 9461 }
72eb7ea8 9462 return ret;
704eff6c 9463#endif
c0d472b1 9464#if defined(TARGET_NR_futimesat)
ac8a6556
AZ
9465 case TARGET_NR_futimesat:
9466 {
9467 struct timeval *tvp, tv[2];
9468 if (arg3) {
9469 if (copy_from_user_timeval(&tv[0], arg3)
9470 || copy_from_user_timeval(&tv[1],
9471 arg3 + sizeof(struct target_timeval)))
2852aafd 9472 return -TARGET_EFAULT;
ac8a6556
AZ
9473 tvp = tv;
9474 } else {
9475 tvp = NULL;
9476 }
2852aafd
RH
9477 if (!(p = lock_user_string(arg2))) {
9478 return -TARGET_EFAULT;
9479 }
c0d472b1 9480 ret = get_errno(futimesat(arg1, path(p), tvp));
ac8a6556
AZ
9481 unlock_user(p, arg2, 0);
9482 }
72eb7ea8 9483 return ret;
ac8a6556 9484#endif
704eff6c 9485#ifdef TARGET_NR_access
31e31b8a 9486 case TARGET_NR_access:
2852aafd
RH
9487 if (!(p = lock_user_string(arg1))) {
9488 return -TARGET_EFAULT;
9489 }
719f908e 9490 ret = get_errno(access(path(p), arg2));
53a5960a 9491 unlock_user(p, arg1, 0);
72eb7ea8 9492 return ret;
704eff6c 9493#endif
92a34c10
TS
9494#if defined(TARGET_NR_faccessat) && defined(__NR_faccessat)
9495 case TARGET_NR_faccessat:
2852aafd
RH
9496 if (!(p = lock_user_string(arg2))) {
9497 return -TARGET_EFAULT;
9498 }
c0d472b1 9499 ret = get_errno(faccessat(arg1, p, arg3, 0));
579a97f7 9500 unlock_user(p, arg2, 0);
72eb7ea8 9501 return ret;
92a34c10 9502#endif
35a2c85f
WX
9503#if defined(TARGET_NR_faccessat2)
9504 case TARGET_NR_faccessat2:
9505 if (!(p = lock_user_string(arg2))) {
9506 return -TARGET_EFAULT;
9507 }
9508 ret = get_errno(faccessat(arg1, p, arg3, arg4));
9509 unlock_user(p, arg2, 0);
9510 return ret;
9511#endif
7a3148a9 9512#ifdef TARGET_NR_nice /* not on alpha */
31e31b8a 9513 case TARGET_NR_nice:
72eb7ea8 9514 return get_errno(nice(arg1));
ebc05488 9515#endif
31e31b8a 9516 case TARGET_NR_sync:
04369ff2 9517 sync();
72eb7ea8 9518 return 0;
5a03cd00
AM
9519#if defined(TARGET_NR_syncfs) && defined(CONFIG_SYNCFS)
9520 case TARGET_NR_syncfs:
72eb7ea8 9521 return get_errno(syncfs(arg1));
5a03cd00 9522#endif
31e31b8a 9523 case TARGET_NR_kill:
72eb7ea8 9524 return get_errno(safe_kill(arg1, target_to_host_signal(arg2)));
704eff6c 9525#ifdef TARGET_NR_rename
31e31b8a 9526 case TARGET_NR_rename:
53a5960a
PB
9527 {
9528 void *p2;
9529 p = lock_user_string(arg1);
9530 p2 = lock_user_string(arg2);
579a97f7
FB
9531 if (!p || !p2)
9532 ret = -TARGET_EFAULT;
9533 else
9534 ret = get_errno(rename(p, p2));
53a5960a
PB
9535 unlock_user(p2, arg2, 0);
9536 unlock_user(p, arg1, 0);
9537 }
72eb7ea8 9538 return ret;
704eff6c 9539#endif
c0d472b1 9540#if defined(TARGET_NR_renameat)
722183f6 9541 case TARGET_NR_renameat:
722183f6 9542 {
579a97f7 9543 void *p2;
722183f6
TS
9544 p = lock_user_string(arg2);
9545 p2 = lock_user_string(arg4);
579a97f7 9546 if (!p || !p2)
0da46a6e 9547 ret = -TARGET_EFAULT;
722183f6 9548 else
c0d472b1 9549 ret = get_errno(renameat(arg1, p, arg3, p2));
579a97f7
FB
9550 unlock_user(p2, arg4, 0);
9551 unlock_user(p, arg2, 0);
722183f6 9552 }
72eb7ea8 9553 return ret;
95d0307c
AS
9554#endif
9555#if defined(TARGET_NR_renameat2)
9556 case TARGET_NR_renameat2:
9557 {
9558 void *p2;
9559 p = lock_user_string(arg2);
9560 p2 = lock_user_string(arg4);
9561 if (!p || !p2) {
9562 ret = -TARGET_EFAULT;
9563 } else {
9564 ret = get_errno(sys_renameat2(arg1, p, arg3, p2, arg5));
9565 }
9566 unlock_user(p2, arg4, 0);
9567 unlock_user(p, arg2, 0);
9568 }
72eb7ea8 9569 return ret;
722183f6 9570#endif
704eff6c 9571#ifdef TARGET_NR_mkdir
31e31b8a 9572 case TARGET_NR_mkdir:
579a97f7 9573 if (!(p = lock_user_string(arg1)))
2852aafd 9574 return -TARGET_EFAULT;
53a5960a
PB
9575 ret = get_errno(mkdir(p, arg2));
9576 unlock_user(p, arg1, 0);
72eb7ea8 9577 return ret;
704eff6c 9578#endif
c0d472b1 9579#if defined(TARGET_NR_mkdirat)
4472ad0d 9580 case TARGET_NR_mkdirat:
579a97f7 9581 if (!(p = lock_user_string(arg2)))
2852aafd 9582 return -TARGET_EFAULT;
c0d472b1 9583 ret = get_errno(mkdirat(arg1, p, arg3));
579a97f7 9584 unlock_user(p, arg2, 0);
72eb7ea8 9585 return ret;
4472ad0d 9586#endif
704eff6c 9587#ifdef TARGET_NR_rmdir
31e31b8a 9588 case TARGET_NR_rmdir:
579a97f7 9589 if (!(p = lock_user_string(arg1)))
2852aafd 9590 return -TARGET_EFAULT;
53a5960a
PB
9591 ret = get_errno(rmdir(p));
9592 unlock_user(p, arg1, 0);
72eb7ea8 9593 return ret;
704eff6c 9594#endif
31e31b8a
FB
9595 case TARGET_NR_dup:
9596 ret = get_errno(dup(arg1));
e36800c9
LV
9597 if (ret >= 0) {
9598 fd_trans_dup(arg1, ret);
9599 }
72eb7ea8 9600 return ret;
704eff6c 9601#ifdef TARGET_NR_pipe
31e31b8a 9602 case TARGET_NR_pipe:
72eb7ea8 9603 return do_pipe(cpu_env, arg1, 0, 0);
704eff6c 9604#endif
099d6b0f
RV
9605#ifdef TARGET_NR_pipe2
9606 case TARGET_NR_pipe2:
72eb7ea8
RH
9607 return do_pipe(cpu_env, arg1,
9608 target_to_host_bitmask(arg2, fcntl_flags_tbl), 1);
099d6b0f 9609#endif
31e31b8a 9610 case TARGET_NR_times:
32f36bce 9611 {
53a5960a 9612 struct target_tms *tmsp;
32f36bce
FB
9613 struct tms tms;
9614 ret = get_errno(times(&tms));
53a5960a 9615 if (arg1) {
579a97f7
FB
9616 tmsp = lock_user(VERIFY_WRITE, arg1, sizeof(struct target_tms), 0);
9617 if (!tmsp)
2852aafd 9618 return -TARGET_EFAULT;
cbb21eed
MB
9619 tmsp->tms_utime = tswapal(host_to_target_clock_t(tms.tms_utime));
9620 tmsp->tms_stime = tswapal(host_to_target_clock_t(tms.tms_stime));
9621 tmsp->tms_cutime = tswapal(host_to_target_clock_t(tms.tms_cutime));
9622 tmsp->tms_cstime = tswapal(host_to_target_clock_t(tms.tms_cstime));
32f36bce 9623 }
c596ed17
FB
9624 if (!is_error(ret))
9625 ret = host_to_target_clock_t(ret);
32f36bce 9626 }
72eb7ea8 9627 return ret;
31e31b8a 9628 case TARGET_NR_acct:
38d840e6
AJ
9629 if (arg1 == 0) {
9630 ret = get_errno(acct(NULL));
9631 } else {
2852aafd
RH
9632 if (!(p = lock_user_string(arg1))) {
9633 return -TARGET_EFAULT;
9634 }
38d840e6
AJ
9635 ret = get_errno(acct(path(p)));
9636 unlock_user(p, arg1, 0);
9637 }
72eb7ea8 9638 return ret;
8070e7be 9639#ifdef TARGET_NR_umount2
31e31b8a 9640 case TARGET_NR_umount2:
579a97f7 9641 if (!(p = lock_user_string(arg1)))
2852aafd 9642 return -TARGET_EFAULT;
53a5960a
PB
9643 ret = get_errno(umount2(p, arg2));
9644 unlock_user(p, arg1, 0);
72eb7ea8 9645 return ret;
ebc05488 9646#endif
31e31b8a 9647 case TARGET_NR_ioctl:
72eb7ea8 9648 return do_ioctl(arg1, arg2, arg3);
47ae93cd 9649#ifdef TARGET_NR_fcntl
31e31b8a 9650 case TARGET_NR_fcntl:
72eb7ea8 9651 return do_fcntl(arg1, arg2, arg3);
ebc05488 9652#endif
31e31b8a 9653 case TARGET_NR_setpgid:
72eb7ea8 9654 return get_errno(setpgid(arg1, arg2));
31e31b8a 9655 case TARGET_NR_umask:
72eb7ea8 9656 return get_errno(umask(arg1));
31e31b8a 9657 case TARGET_NR_chroot:
579a97f7 9658 if (!(p = lock_user_string(arg1)))
2852aafd 9659 return -TARGET_EFAULT;
53a5960a
PB
9660 ret = get_errno(chroot(p));
9661 unlock_user(p, arg1, 0);
72eb7ea8 9662 return ret;
704eff6c 9663#ifdef TARGET_NR_dup2
31e31b8a
FB
9664 case TARGET_NR_dup2:
9665 ret = get_errno(dup2(arg1, arg2));
e36800c9
LV
9666 if (ret >= 0) {
9667 fd_trans_dup(arg1, arg2);
9668 }
72eb7ea8 9669 return ret;
704eff6c 9670#endif
d0927938
UH
9671#if defined(CONFIG_DUP3) && defined(TARGET_NR_dup3)
9672 case TARGET_NR_dup3:
10fa993a
PM
9673 {
9674 int host_flags;
9675
9676 if ((arg3 & ~TARGET_O_CLOEXEC) != 0) {
9677 return -EINVAL;
9678 }
9679 host_flags = target_to_host_bitmask(arg3, fcntl_flags_tbl);
9680 ret = get_errno(dup3(arg1, arg2, host_flags));
e36800c9
LV
9681 if (ret >= 0) {
9682 fd_trans_dup(arg1, arg2);
9683 }
72eb7ea8 9684 return ret;
10fa993a 9685 }
d0927938 9686#endif
7a3148a9 9687#ifdef TARGET_NR_getppid /* not on alpha */
31e31b8a 9688 case TARGET_NR_getppid:
72eb7ea8 9689 return get_errno(getppid());
7a3148a9 9690#endif
704eff6c 9691#ifdef TARGET_NR_getpgrp
31e31b8a 9692 case TARGET_NR_getpgrp:
72eb7ea8 9693 return get_errno(getpgrp());
704eff6c 9694#endif
31e31b8a 9695 case TARGET_NR_setsid:
72eb7ea8 9696 return get_errno(setsid());
e5febef5 9697#ifdef TARGET_NR_sigaction
31e31b8a 9698 case TARGET_NR_sigaction:
31e31b8a 9699 {
02d0de10 9700#if defined(TARGET_MIPS)
106ec879
FB
9701 struct target_sigaction act, oact, *pact, *old_act;
9702
9703 if (arg2) {
579a97f7 9704 if (!lock_user_struct(VERIFY_READ, old_act, arg2, 1))
2852aafd 9705 return -TARGET_EFAULT;
106ec879
FB
9706 act._sa_handler = old_act->_sa_handler;
9707 target_siginitset(&act.sa_mask, old_act->sa_mask.sig[0]);
9708 act.sa_flags = old_act->sa_flags;
9709 unlock_user_struct(old_act, arg2, 0);
9710 pact = &act;
9711 } else {
9712 pact = NULL;
9713 }
9714
02fb28e8 9715 ret = get_errno(do_sigaction(arg1, pact, &oact, 0));
106ec879
FB
9716
9717 if (!is_error(ret) && arg3) {
579a97f7 9718 if (!lock_user_struct(VERIFY_WRITE, old_act, arg3, 0))
2852aafd 9719 return -TARGET_EFAULT;
106ec879
FB
9720 old_act->_sa_handler = oact._sa_handler;
9721 old_act->sa_flags = oact.sa_flags;
9722 old_act->sa_mask.sig[0] = oact.sa_mask.sig[0];
9723 old_act->sa_mask.sig[1] = 0;
9724 old_act->sa_mask.sig[2] = 0;
9725 old_act->sa_mask.sig[3] = 0;
9726 unlock_user_struct(old_act, arg3, 1);
9727 }
6049f4f8
RH
9728#else
9729 struct target_old_sigaction *old_act;
9730 struct target_sigaction act, oact, *pact;
9731 if (arg2) {
9732 if (!lock_user_struct(VERIFY_READ, old_act, arg2, 1))
2852aafd 9733 return -TARGET_EFAULT;
6049f4f8
RH
9734 act._sa_handler = old_act->_sa_handler;
9735 target_siginitset(&act.sa_mask, old_act->sa_mask);
9736 act.sa_flags = old_act->sa_flags;
ca192277 9737#ifdef TARGET_ARCH_HAS_SA_RESTORER
6049f4f8 9738 act.sa_restorer = old_act->sa_restorer;
ca192277 9739#endif
6049f4f8
RH
9740 unlock_user_struct(old_act, arg2, 0);
9741 pact = &act;
9742 } else {
9743 pact = NULL;
9744 }
02fb28e8 9745 ret = get_errno(do_sigaction(arg1, pact, &oact, 0));
6049f4f8
RH
9746 if (!is_error(ret) && arg3) {
9747 if (!lock_user_struct(VERIFY_WRITE, old_act, arg3, 0))
2852aafd 9748 return -TARGET_EFAULT;
6049f4f8
RH
9749 old_act->_sa_handler = oact._sa_handler;
9750 old_act->sa_mask = oact.sa_mask.sig[0];
9751 old_act->sa_flags = oact.sa_flags;
ca192277 9752#ifdef TARGET_ARCH_HAS_SA_RESTORER
6049f4f8 9753 old_act->sa_restorer = oact.sa_restorer;
ca192277 9754#endif
6049f4f8
RH
9755 unlock_user_struct(old_act, arg3, 1);
9756 }
388bb21a 9757#endif
31e31b8a 9758 }
72eb7ea8 9759 return ret;
e5febef5 9760#endif
66fb9763 9761 case TARGET_NR_rt_sigaction:
53a5960a 9762 {
0f6f9903
RH
9763 /*
9764 * For Alpha and SPARC this is a 5 argument syscall, with
78bfef72
PM
9765 * a 'restorer' parameter which must be copied into the
9766 * sa_restorer field of the sigaction struct.
9767 * For Alpha that 'restorer' is arg5; for SPARC it is arg4,
9768 * and arg5 is the sigsetsize.
78bfef72 9769 */
0f6f9903
RH
9770#if defined(TARGET_ALPHA)
9771 target_ulong sigsetsize = arg4;
9772 target_ulong restorer = arg5;
9773#elif defined(TARGET_SPARC)
78bfef72
PM
9774 target_ulong restorer = arg4;
9775 target_ulong sigsetsize = arg5;
9776#else
9777 target_ulong sigsetsize = arg4;
02fb28e8 9778 target_ulong restorer = 0;
78bfef72 9779#endif
fb80439b
RH
9780 struct target_sigaction *act = NULL;
9781 struct target_sigaction *oact = NULL;
53a5960a 9782
78bfef72 9783 if (sigsetsize != sizeof(target_sigset_t)) {
72eb7ea8 9784 return -TARGET_EINVAL;
c815701e 9785 }
fb80439b
RH
9786 if (arg2 && !lock_user_struct(VERIFY_READ, act, arg2, 1)) {
9787 return -TARGET_EFAULT;
78bfef72 9788 }
fb80439b
RH
9789 if (arg3 && !lock_user_struct(VERIFY_WRITE, oact, arg3, 0)) {
9790 ret = -TARGET_EFAULT;
9791 } else {
9792 ret = get_errno(do_sigaction(arg1, act, oact, restorer));
9793 if (oact) {
9794 unlock_user_struct(oact, arg3, 1);
579a97f7 9795 }
fb80439b
RH
9796 }
9797 if (act) {
53a5960a 9798 unlock_user_struct(act, arg2, 0);
fb80439b 9799 }
53a5960a 9800 }
72eb7ea8 9801 return ret;
7a3148a9 9802#ifdef TARGET_NR_sgetmask /* not on alpha */
31e31b8a 9803 case TARGET_NR_sgetmask:
66fb9763
FB
9804 {
9805 sigset_t cur_set;
992f48a0 9806 abi_ulong target_set;
3d3efba0
PM
9807 ret = do_sigprocmask(0, NULL, &cur_set);
9808 if (!ret) {
9809 host_to_target_old_sigset(&target_set, &cur_set);
9810 ret = target_set;
9811 }
66fb9763 9812 }
72eb7ea8 9813 return ret;
7a3148a9
JM
9814#endif
9815#ifdef TARGET_NR_ssetmask /* not on alpha */
31e31b8a 9816 case TARGET_NR_ssetmask:
66fb9763 9817 {
a8617d8c 9818 sigset_t set, oset;
992f48a0 9819 abi_ulong target_set = arg1;
66fb9763 9820 target_to_host_old_sigset(&set, &target_set);
3d3efba0
PM
9821 ret = do_sigprocmask(SIG_SETMASK, &set, &oset);
9822 if (!ret) {
9823 host_to_target_old_sigset(&target_set, &oset);
9824 ret = target_set;
9825 }
66fb9763 9826 }
72eb7ea8 9827 return ret;
7a3148a9 9828#endif
e5febef5 9829#ifdef TARGET_NR_sigprocmask
66fb9763
FB
9830 case TARGET_NR_sigprocmask:
9831 {
a5b3b13b
RH
9832#if defined(TARGET_ALPHA)
9833 sigset_t set, oldset;
9834 abi_ulong mask;
9835 int how;
9836
9837 switch (arg1) {
9838 case TARGET_SIG_BLOCK:
9839 how = SIG_BLOCK;
9840 break;
9841 case TARGET_SIG_UNBLOCK:
9842 how = SIG_UNBLOCK;
9843 break;
9844 case TARGET_SIG_SETMASK:
9845 how = SIG_SETMASK;
9846 break;
9847 default:
259841c1 9848 return -TARGET_EINVAL;
a5b3b13b
RH
9849 }
9850 mask = arg2;
9851 target_to_host_old_sigset(&set, &mask);
9852
3d3efba0 9853 ret = do_sigprocmask(how, &set, &oldset);
a5b3b13b
RH
9854 if (!is_error(ret)) {
9855 host_to_target_old_sigset(&mask, &oldset);
9856 ret = mask;
0effdc29 9857 cpu_env->ir[IR_V0] = 0; /* force no error */
a5b3b13b
RH
9858 }
9859#else
66fb9763 9860 sigset_t set, oldset, *set_ptr;
a5b3b13b 9861 int how;
3b46e624 9862
53a5960a 9863 if (arg2) {
ebce1719
PV
9864 p = lock_user(VERIFY_READ, arg2, sizeof(target_sigset_t), 1);
9865 if (!p) {
9866 return -TARGET_EFAULT;
9867 }
9868 target_to_host_old_sigset(&set, p);
9869 unlock_user(p, arg2, 0);
9870 set_ptr = &set;
a5b3b13b 9871 switch (arg1) {
66fb9763
FB
9872 case TARGET_SIG_BLOCK:
9873 how = SIG_BLOCK;
9874 break;
9875 case TARGET_SIG_UNBLOCK:
9876 how = SIG_UNBLOCK;
9877 break;
9878 case TARGET_SIG_SETMASK:
9879 how = SIG_SETMASK;
9880 break;
9881 default:
259841c1 9882 return -TARGET_EINVAL;
66fb9763 9883 }
66fb9763
FB
9884 } else {
9885 how = 0;
9886 set_ptr = NULL;
9887 }
3d3efba0 9888 ret = do_sigprocmask(how, set_ptr, &oldset);
53a5960a 9889 if (!is_error(ret) && arg3) {
c227f099 9890 if (!(p = lock_user(VERIFY_WRITE, arg3, sizeof(target_sigset_t), 0)))
2852aafd 9891 return -TARGET_EFAULT;
53a5960a 9892 host_to_target_old_sigset(p, &oldset);
c227f099 9893 unlock_user(p, arg3, sizeof(target_sigset_t));
66fb9763 9894 }
a5b3b13b 9895#endif
66fb9763 9896 }
72eb7ea8 9897 return ret;
e5febef5 9898#endif
66fb9763
FB
9899 case TARGET_NR_rt_sigprocmask:
9900 {
9901 int how = arg1;
9902 sigset_t set, oldset, *set_ptr;
3b46e624 9903
c815701e 9904 if (arg4 != sizeof(target_sigset_t)) {
72eb7ea8 9905 return -TARGET_EINVAL;
c815701e
PM
9906 }
9907
53a5960a 9908 if (arg2) {
d3ced2a5
SCW
9909 p = lock_user(VERIFY_READ, arg2, sizeof(target_sigset_t), 1);
9910 if (!p) {
9911 return -TARGET_EFAULT;
9912 }
9913 target_to_host_sigset(&set, p);
9914 unlock_user(p, arg2, 0);
9915 set_ptr = &set;
66fb9763
FB
9916 switch(how) {
9917 case TARGET_SIG_BLOCK:
9918 how = SIG_BLOCK;
9919 break;
9920 case TARGET_SIG_UNBLOCK:
9921 how = SIG_UNBLOCK;
9922 break;
9923 case TARGET_SIG_SETMASK:
9924 how = SIG_SETMASK;
9925 break;
9926 default:
259841c1 9927 return -TARGET_EINVAL;
66fb9763 9928 }
66fb9763
FB
9929 } else {
9930 how = 0;
9931 set_ptr = NULL;
9932 }
3d3efba0 9933 ret = do_sigprocmask(how, set_ptr, &oldset);
53a5960a 9934 if (!is_error(ret) && arg3) {
c227f099 9935 if (!(p = lock_user(VERIFY_WRITE, arg3, sizeof(target_sigset_t), 0)))
2852aafd 9936 return -TARGET_EFAULT;
53a5960a 9937 host_to_target_sigset(p, &oldset);
c227f099 9938 unlock_user(p, arg3, sizeof(target_sigset_t));
66fb9763
FB
9939 }
9940 }
72eb7ea8 9941 return ret;
e5febef5 9942#ifdef TARGET_NR_sigpending
66fb9763
FB
9943 case TARGET_NR_sigpending:
9944 {
9945 sigset_t set;
9946 ret = get_errno(sigpending(&set));
9947 if (!is_error(ret)) {
c227f099 9948 if (!(p = lock_user(VERIFY_WRITE, arg1, sizeof(target_sigset_t), 0)))
2852aafd 9949 return -TARGET_EFAULT;
53a5960a 9950 host_to_target_old_sigset(p, &set);
c227f099 9951 unlock_user(p, arg1, sizeof(target_sigset_t));
66fb9763
FB
9952 }
9953 }
72eb7ea8 9954 return ret;
e5febef5 9955#endif
66fb9763
FB
9956 case TARGET_NR_rt_sigpending:
9957 {
9958 sigset_t set;
c815701e
PM
9959
9960 /* Yes, this check is >, not != like most. We follow the kernel's
9961 * logic and it does it like this because it implements
9962 * NR_sigpending through the same code path, and in that case
9963 * the old_sigset_t is smaller in size.
9964 */
9965 if (arg2 > sizeof(target_sigset_t)) {
72eb7ea8 9966 return -TARGET_EINVAL;
c815701e
PM
9967 }
9968
66fb9763
FB
9969 ret = get_errno(sigpending(&set));
9970 if (!is_error(ret)) {
c227f099 9971 if (!(p = lock_user(VERIFY_WRITE, arg1, sizeof(target_sigset_t), 0)))
2852aafd 9972 return -TARGET_EFAULT;
53a5960a 9973 host_to_target_sigset(p, &set);
c227f099 9974 unlock_user(p, arg1, sizeof(target_sigset_t));
66fb9763
FB
9975 }
9976 }
72eb7ea8 9977 return ret;
e5febef5 9978#ifdef TARGET_NR_sigsuspend
66fb9763
FB
9979 case TARGET_NR_sigsuspend:
9980 {
0a99f093
RH
9981 sigset_t *set;
9982
f43ce12b 9983#if defined(TARGET_ALPHA)
0a99f093 9984 TaskState *ts = cpu->opaque;
7fb5ef35
RH
9985 /* target_to_host_old_sigset will bswap back */
9986 abi_ulong mask = tswapal(arg1);
0a99f093
RH
9987 set = &ts->sigsuspend_mask;
9988 target_to_host_old_sigset(set, &mask);
f43ce12b 9989#else
0a99f093
RH
9990 ret = process_sigsuspend_mask(&set, arg1, sizeof(target_sigset_t));
9991 if (ret != 0) {
9992 return ret;
3d3efba0 9993 }
0a99f093
RH
9994#endif
9995 ret = get_errno(safe_rt_sigsuspend(set, SIGSET_T_SIZE));
9996 finish_sigsuspend_mask(ret);
66fb9763 9997 }
72eb7ea8 9998 return ret;
e5febef5 9999#endif
66fb9763
FB
10000 case TARGET_NR_rt_sigsuspend:
10001 {
0a99f093 10002 sigset_t *set;
c815701e 10003
0a99f093
RH
10004 ret = process_sigsuspend_mask(&set, arg1, arg2);
10005 if (ret != 0) {
10006 return ret;
3d3efba0 10007 }
0a99f093
RH
10008 ret = get_errno(safe_rt_sigsuspend(set, SIGSET_T_SIZE));
10009 finish_sigsuspend_mask(ret);
66fb9763 10010 }
72eb7ea8 10011 return ret;
859e8a89 10012#ifdef TARGET_NR_rt_sigtimedwait
66fb9763
FB
10013 case TARGET_NR_rt_sigtimedwait:
10014 {
66fb9763
FB
10015 sigset_t set;
10016 struct timespec uts, *puts;
10017 siginfo_t uinfo;
3b46e624 10018
c815701e 10019 if (arg4 != sizeof(target_sigset_t)) {
72eb7ea8 10020 return -TARGET_EINVAL;
c815701e
PM
10021 }
10022
c227f099 10023 if (!(p = lock_user(VERIFY_READ, arg1, sizeof(target_sigset_t), 1)))
2852aafd 10024 return -TARGET_EFAULT;
53a5960a
PB
10025 target_to_host_sigset(&set, p);
10026 unlock_user(p, arg1, 0);
10027 if (arg3) {
66fb9763 10028 puts = &uts;
4d213001
FB
10029 if (target_to_host_timespec(puts, arg3)) {
10030 return -TARGET_EFAULT;
10031 }
66fb9763
FB
10032 } else {
10033 puts = NULL;
10034 }
b3f82330
PM
10035 ret = get_errno(safe_rt_sigtimedwait(&set, &uinfo, puts,
10036 SIGSET_T_SIZE));
974a196d
PJ
10037 if (!is_error(ret)) {
10038 if (arg2) {
10039 p = lock_user(VERIFY_WRITE, arg2, sizeof(target_siginfo_t),
10040 0);
10041 if (!p) {
2852aafd 10042 return -TARGET_EFAULT;
974a196d
PJ
10043 }
10044 host_to_target_siginfo(p, &uinfo);
10045 unlock_user(p, arg2, sizeof(target_siginfo_t));
10046 }
10047 ret = host_to_target_signal(ret);
66fb9763
FB
10048 }
10049 }
72eb7ea8 10050 return ret;
ddcbde15
FB
10051#endif
10052#ifdef TARGET_NR_rt_sigtimedwait_time64
10053 case TARGET_NR_rt_sigtimedwait_time64:
10054 {
10055 sigset_t set;
10056 struct timespec uts, *puts;
10057 siginfo_t uinfo;
10058
10059 if (arg4 != sizeof(target_sigset_t)) {
10060 return -TARGET_EINVAL;
10061 }
10062
10063 p = lock_user(VERIFY_READ, arg1, sizeof(target_sigset_t), 1);
10064 if (!p) {
10065 return -TARGET_EFAULT;
10066 }
10067 target_to_host_sigset(&set, p);
10068 unlock_user(p, arg1, 0);
10069 if (arg3) {
10070 puts = &uts;
10071 if (target_to_host_timespec64(puts, arg3)) {
10072 return -TARGET_EFAULT;
10073 }
10074 } else {
10075 puts = NULL;
10076 }
10077 ret = get_errno(safe_rt_sigtimedwait(&set, &uinfo, puts,
10078 SIGSET_T_SIZE));
10079 if (!is_error(ret)) {
10080 if (arg2) {
10081 p = lock_user(VERIFY_WRITE, arg2,
10082 sizeof(target_siginfo_t), 0);
10083 if (!p) {
10084 return -TARGET_EFAULT;
10085 }
10086 host_to_target_siginfo(p, &uinfo);
10087 unlock_user(p, arg2, sizeof(target_siginfo_t));
10088 }
10089 ret = host_to_target_signal(ret);
10090 }
10091 }
10092 return ret;
859e8a89 10093#endif
66fb9763
FB
10094 case TARGET_NR_rt_sigqueueinfo:
10095 {
10096 siginfo_t uinfo;
4debae6f
PM
10097
10098 p = lock_user(VERIFY_READ, arg3, sizeof(target_siginfo_t), 1);
10099 if (!p) {
2852aafd 10100 return -TARGET_EFAULT;
4debae6f 10101 }
53a5960a 10102 target_to_host_siginfo(&uinfo, p);
d8b6d892 10103 unlock_user(p, arg3, 0);
9b9145f0 10104 ret = get_errno(sys_rt_sigqueueinfo(arg1, target_to_host_signal(arg2), &uinfo));
66fb9763 10105 }
72eb7ea8 10106 return ret;
cf8b8bfc
MS
10107 case TARGET_NR_rt_tgsigqueueinfo:
10108 {
10109 siginfo_t uinfo;
10110
10111 p = lock_user(VERIFY_READ, arg4, sizeof(target_siginfo_t), 1);
10112 if (!p) {
2852aafd 10113 return -TARGET_EFAULT;
cf8b8bfc
MS
10114 }
10115 target_to_host_siginfo(&uinfo, p);
10116 unlock_user(p, arg4, 0);
9b9145f0 10117 ret = get_errno(sys_rt_tgsigqueueinfo(arg1, arg2, target_to_host_signal(arg3), &uinfo));
cf8b8bfc 10118 }
72eb7ea8 10119 return ret;
e5febef5 10120#ifdef TARGET_NR_sigreturn
66fb9763 10121 case TARGET_NR_sigreturn:
3d3efba0 10122 if (block_signals()) {
af254a27 10123 return -QEMU_ERESTARTSYS;
3d3efba0 10124 }
72eb7ea8 10125 return do_sigreturn(cpu_env);
e5febef5 10126#endif
66fb9763 10127 case TARGET_NR_rt_sigreturn:
3d3efba0 10128 if (block_signals()) {
af254a27 10129 return -QEMU_ERESTARTSYS;
3d3efba0 10130 }
72eb7ea8 10131 return do_rt_sigreturn(cpu_env);
31e31b8a 10132 case TARGET_NR_sethostname:
579a97f7 10133 if (!(p = lock_user_string(arg1)))
2852aafd 10134 return -TARGET_EFAULT;
53a5960a
PB
10135 ret = get_errno(sethostname(p, arg2));
10136 unlock_user(p, arg1, 0);
72eb7ea8 10137 return ret;
4f7f8924 10138#ifdef TARGET_NR_setrlimit
31e31b8a 10139 case TARGET_NR_setrlimit:
9de5e440 10140 {
e22b7015 10141 int resource = target_to_host_resource(arg1);
53a5960a 10142 struct target_rlimit *target_rlim;
9de5e440 10143 struct rlimit rlim;
579a97f7 10144 if (!lock_user_struct(VERIFY_READ, target_rlim, arg2, 1))
2852aafd 10145 return -TARGET_EFAULT;
81bbe906
TY
10146 rlim.rlim_cur = target_to_host_rlim(target_rlim->rlim_cur);
10147 rlim.rlim_max = target_to_host_rlim(target_rlim->rlim_max);
53a5960a 10148 unlock_user_struct(target_rlim, arg2, 0);
5dfa88f7
MF
10149 /*
10150 * If we just passed through resource limit settings for memory then
10151 * they would also apply to QEMU's own allocations, and QEMU will
10152 * crash or hang or die if its allocations fail. Ideally we would
10153 * track the guest allocations in QEMU and apply the limits ourselves.
10154 * For now, just tell the guest the call succeeded but don't actually
10155 * limit anything.
10156 */
10157 if (resource != RLIMIT_AS &&
10158 resource != RLIMIT_DATA &&
10159 resource != RLIMIT_STACK) {
10160 return get_errno(setrlimit(resource, &rlim));
10161 } else {
10162 return 0;
10163 }
9de5e440 10164 }
4f7f8924
AR
10165#endif
10166#ifdef TARGET_NR_getrlimit
31e31b8a 10167 case TARGET_NR_getrlimit:
9de5e440 10168 {
e22b7015 10169 int resource = target_to_host_resource(arg1);
53a5960a 10170 struct target_rlimit *target_rlim;
9de5e440 10171 struct rlimit rlim;
3b46e624 10172
9de5e440
FB
10173 ret = get_errno(getrlimit(resource, &rlim));
10174 if (!is_error(ret)) {
579a97f7 10175 if (!lock_user_struct(VERIFY_WRITE, target_rlim, arg2, 0))
2852aafd 10176 return -TARGET_EFAULT;
81bbe906
TY
10177 target_rlim->rlim_cur = host_to_target_rlim(rlim.rlim_cur);
10178 target_rlim->rlim_max = host_to_target_rlim(rlim.rlim_max);
53a5960a 10179 unlock_user_struct(target_rlim, arg2, 1);
9de5e440
FB
10180 }
10181 }
72eb7ea8 10182 return ret;
4f7f8924 10183#endif
31e31b8a 10184 case TARGET_NR_getrusage:
b409186b
FB
10185 {
10186 struct rusage rusage;
b409186b
FB
10187 ret = get_errno(getrusage(arg1, &rusage));
10188 if (!is_error(ret)) {
a39fb273 10189 ret = host_to_target_rusage(arg2, &rusage);
b409186b
FB
10190 }
10191 }
72eb7ea8 10192 return ret;
859e8a89 10193#if defined(TARGET_NR_gettimeofday)
31e31b8a
FB
10194 case TARGET_NR_gettimeofday:
10195 {
31e31b8a 10196 struct timeval tv;
a52f5f87
RH
10197 struct timezone tz;
10198
10199 ret = get_errno(gettimeofday(&tv, &tz));
31e31b8a 10200 if (!is_error(ret)) {
a52f5f87
RH
10201 if (arg1 && copy_to_user_timeval(arg1, &tv)) {
10202 return -TARGET_EFAULT;
10203 }
10204 if (arg2 && copy_to_user_timezone(arg2, &tz)) {
2852aafd 10205 return -TARGET_EFAULT;
a52f5f87 10206 }
31e31b8a
FB
10207 }
10208 }
72eb7ea8 10209 return ret;
859e8a89
AF
10210#endif
10211#if defined(TARGET_NR_settimeofday)
31e31b8a
FB
10212 case TARGET_NR_settimeofday:
10213 {
b67d8031 10214 struct timeval tv, *ptv = NULL;
ef4467e9
PB
10215 struct timezone tz, *ptz = NULL;
10216
b67d8031
PB
10217 if (arg1) {
10218 if (copy_from_user_timeval(&tv, arg1)) {
2852aafd 10219 return -TARGET_EFAULT;
b67d8031
PB
10220 }
10221 ptv = &tv;
10222 }
ef4467e9
PB
10223
10224 if (arg2) {
10225 if (copy_from_user_timezone(&tz, arg2)) {
2852aafd 10226 return -TARGET_EFAULT;
ef4467e9
PB
10227 }
10228 ptz = &tz;
10229 }
10230
72eb7ea8 10231 return get_errno(settimeofday(ptv, ptz));
31e31b8a 10232 }
859e8a89 10233#endif
9468a5d4 10234#if defined(TARGET_NR_select)
31e31b8a 10235 case TARGET_NR_select:
5457dc9e
LV
10236#if defined(TARGET_WANT_NI_OLD_SELECT)
10237 /* some architectures used to have old_select here
10238 * but now ENOSYS it.
10239 */
10240 ret = -TARGET_ENOSYS;
10241#elif defined(TARGET_WANT_OLD_SYS_SELECT)
10242 ret = do_old_select(arg1);
9468a5d4 10243#else
5457dc9e 10244 ret = do_select(arg1, arg2, arg3, arg4, arg5);
9468a5d4 10245#endif
72eb7ea8 10246 return ret;
9e42382f
RV
10247#endif
10248#ifdef TARGET_NR_pselect6
10249 case TARGET_NR_pselect6:
e5ce9688
FB
10250 return do_pselect6(arg1, arg2, arg3, arg4, arg5, arg6, false);
10251#endif
10252#ifdef TARGET_NR_pselect6_time64
10253 case TARGET_NR_pselect6_time64:
10254 return do_pselect6(arg1, arg2, arg3, arg4, arg5, arg6, true);
048f6b4d 10255#endif
704eff6c 10256#ifdef TARGET_NR_symlink
31e31b8a 10257 case TARGET_NR_symlink:
53a5960a
PB
10258 {
10259 void *p2;
10260 p = lock_user_string(arg1);
10261 p2 = lock_user_string(arg2);
579a97f7
FB
10262 if (!p || !p2)
10263 ret = -TARGET_EFAULT;
10264 else
10265 ret = get_errno(symlink(p, p2));
53a5960a
PB
10266 unlock_user(p2, arg2, 0);
10267 unlock_user(p, arg1, 0);
10268 }
72eb7ea8 10269 return ret;
704eff6c 10270#endif
c0d472b1 10271#if defined(TARGET_NR_symlinkat)
f0b6243d 10272 case TARGET_NR_symlinkat:
f0b6243d 10273 {
579a97f7 10274 void *p2;
f0b6243d
TS
10275 p = lock_user_string(arg1);
10276 p2 = lock_user_string(arg3);
579a97f7 10277 if (!p || !p2)
0da46a6e 10278 ret = -TARGET_EFAULT;
f0b6243d 10279 else
c0d472b1 10280 ret = get_errno(symlinkat(p, arg2, p2));
579a97f7
FB
10281 unlock_user(p2, arg3, 0);
10282 unlock_user(p, arg1, 0);
f0b6243d 10283 }
72eb7ea8 10284 return ret;
f0b6243d 10285#endif
704eff6c 10286#ifdef TARGET_NR_readlink
31e31b8a 10287 case TARGET_NR_readlink:
53a5960a 10288 {
463d8e73 10289 void *p2;
53a5960a 10290 p = lock_user_string(arg1);
579a97f7 10291 p2 = lock_user(VERIFY_WRITE, arg2, arg3, 0);
a4dab0a0 10292 ret = get_errno(do_guest_readlink(p, p2, arg3));
53a5960a
PB
10293 unlock_user(p2, arg2, ret);
10294 unlock_user(p, arg1, 0);
10295 }
72eb7ea8 10296 return ret;
704eff6c 10297#endif
c0d472b1 10298#if defined(TARGET_NR_readlinkat)
5e0ccb18 10299 case TARGET_NR_readlinkat:
5e0ccb18 10300 {
579a97f7 10301 void *p2;
5e0ccb18 10302 p = lock_user_string(arg2);
579a97f7 10303 p2 = lock_user(VERIFY_WRITE, arg3, arg4, 0);
463d8e73
AS
10304 if (!p || !p2) {
10305 ret = -TARGET_EFAULT;
65d4830d
JN
10306 } else if (!arg4) {
10307 /* Short circuit this for the magic exe check. */
10308 ret = -TARGET_EINVAL;
463d8e73 10309 } else if (is_proc_myself((const char *)p, "exe")) {
258bec39
HD
10310 /*
10311 * Don't worry about sign mismatch as earlier mapping
10312 * logic would have thrown a bad address error.
10313 */
10314 ret = MIN(strlen(exec_path), arg4);
10315 /* We cannot NUL terminate the string. */
10316 memcpy(p2, exec_path, ret);
463d8e73 10317 } else {
c0d472b1 10318 ret = get_errno(readlinkat(arg1, path(p), p2, arg4));
463d8e73 10319 }
579a97f7
FB
10320 unlock_user(p2, arg3, ret);
10321 unlock_user(p, arg2, 0);
5e0ccb18 10322 }
72eb7ea8 10323 return ret;
5e0ccb18 10324#endif
e5febef5 10325#ifdef TARGET_NR_swapon
31e31b8a 10326 case TARGET_NR_swapon:
579a97f7 10327 if (!(p = lock_user_string(arg1)))
2852aafd 10328 return -TARGET_EFAULT;
53a5960a
PB
10329 ret = get_errno(swapon(p, arg2));
10330 unlock_user(p, arg1, 0);
72eb7ea8 10331 return ret;
e5febef5 10332#endif
31e31b8a 10333 case TARGET_NR_reboot:
c07ecc68
LV
10334 if (arg3 == LINUX_REBOOT_CMD_RESTART2) {
10335 /* arg4 must be ignored in all other cases */
10336 p = lock_user_string(arg4);
10337 if (!p) {
2852aafd 10338 return -TARGET_EFAULT;
c07ecc68
LV
10339 }
10340 ret = get_errno(reboot(arg1, arg2, arg3, p));
10341 unlock_user(p, arg4, 0);
10342 } else {
10343 ret = get_errno(reboot(arg1, arg2, arg3, NULL));
10344 }
72eb7ea8 10345 return ret;
e5febef5 10346#ifdef TARGET_NR_mmap
31e31b8a 10347 case TARGET_NR_mmap:
09701199
AG
10348#if (defined(TARGET_I386) && defined(TARGET_ABI32)) || \
10349 (defined(TARGET_ARM) && defined(TARGET_ABI32)) || \
a4c075f1
UH
10350 defined(TARGET_M68K) || defined(TARGET_CRIS) || defined(TARGET_MICROBLAZE) \
10351 || defined(TARGET_S390X)
31e31b8a 10352 {
992f48a0
BS
10353 abi_ulong *v;
10354 abi_ulong v1, v2, v3, v4, v5, v6;
579a97f7 10355 if (!(v = lock_user(VERIFY_READ, arg1, 6 * sizeof(abi_ulong), 1)))
2852aafd 10356 return -TARGET_EFAULT;
cbb21eed
MB
10357 v1 = tswapal(v[0]);
10358 v2 = tswapal(v[1]);
10359 v3 = tswapal(v[2]);
10360 v4 = tswapal(v[3]);
10361 v5 = tswapal(v[4]);
10362 v6 = tswapal(v[5]);
53a5960a 10363 unlock_user(v, arg1, 0);
9ab8d071 10364 return do_mmap(v1, v2, v3, v4, v5, v6);
31e31b8a 10365 }
31e31b8a 10366#else
ee1bf83d 10367 /* mmap pointers are always untagged */
9ab8d071 10368 return do_mmap(arg1, arg2, arg3, arg4, arg5, arg6);
31e31b8a 10369#endif
e5febef5 10370#endif
a315a145 10371#ifdef TARGET_NR_mmap2
6fb883e8 10372 case TARGET_NR_mmap2:
bb7ec043 10373#ifndef MMAP_SHIFT
c573ff67 10374#define MMAP_SHIFT 12
c573ff67 10375#endif
9ab8d071
RH
10376 return do_mmap(arg1, arg2, arg3, arg4, arg5,
10377 (off_t)(abi_ulong)arg6 << MMAP_SHIFT);
a315a145 10378#endif
31e31b8a 10379 case TARGET_NR_munmap:
ee1bf83d 10380 arg1 = cpu_untagged_addr(cpu, arg1);
72eb7ea8 10381 return get_errno(target_munmap(arg1, arg2));
9de5e440 10382 case TARGET_NR_mprotect:
ee1bf83d 10383 arg1 = cpu_untagged_addr(cpu, arg1);
97374d38 10384 {
0429a971 10385 TaskState *ts = cpu->opaque;
97374d38
PB
10386 /* Special hack to detect libc making the stack executable. */
10387 if ((arg3 & PROT_GROWSDOWN)
10388 && arg1 >= ts->info->stack_limit
10389 && arg1 <= ts->info->start_stack) {
10390 arg3 &= ~PROT_GROWSDOWN;
10391 arg2 = arg2 + arg1 - ts->info->stack_limit;
10392 arg1 = ts->info->stack_limit;
10393 }
10394 }
72eb7ea8 10395 return get_errno(target_mprotect(arg1, arg2, arg3));
e5febef5 10396#ifdef TARGET_NR_mremap
9de5e440 10397 case TARGET_NR_mremap:
ee1bf83d
RH
10398 arg1 = cpu_untagged_addr(cpu, arg1);
10399 /* mremap new_addr (arg5) is always untagged */
72eb7ea8 10400 return get_errno(target_mremap(arg1, arg2, arg3, arg4, arg5));
e5febef5 10401#endif
53a5960a 10402 /* ??? msync/mlock/munlock are broken for softmmu. */
e5febef5 10403#ifdef TARGET_NR_msync
9de5e440 10404 case TARGET_NR_msync:
fe080593
HD
10405 return get_errno(msync(g2h(cpu, arg1), arg2,
10406 target_to_host_msync_arg(arg3)));
e5febef5
TS
10407#endif
10408#ifdef TARGET_NR_mlock
9de5e440 10409 case TARGET_NR_mlock:
3e8f1628 10410 return get_errno(mlock(g2h(cpu, arg1), arg2));
e5febef5
TS
10411#endif
10412#ifdef TARGET_NR_munlock
9de5e440 10413 case TARGET_NR_munlock:
3e8f1628 10414 return get_errno(munlock(g2h(cpu, arg1), arg2));
e5febef5
TS
10415#endif
10416#ifdef TARGET_NR_mlockall
9de5e440 10417 case TARGET_NR_mlockall:
72eb7ea8 10418 return get_errno(mlockall(target_to_host_mlockall_arg(arg1)));
e5febef5
TS
10419#endif
10420#ifdef TARGET_NR_munlockall
9de5e440 10421 case TARGET_NR_munlockall:
72eb7ea8 10422 return get_errno(munlockall());
e5febef5 10423#endif
4f7f8924 10424#ifdef TARGET_NR_truncate
31e31b8a 10425 case TARGET_NR_truncate:
579a97f7 10426 if (!(p = lock_user_string(arg1)))
2852aafd 10427 return -TARGET_EFAULT;
53a5960a
PB
10428 ret = get_errno(truncate(p, arg2));
10429 unlock_user(p, arg1, 0);
72eb7ea8 10430 return ret;
4f7f8924
AR
10431#endif
10432#ifdef TARGET_NR_ftruncate
31e31b8a 10433 case TARGET_NR_ftruncate:
72eb7ea8 10434 return get_errno(ftruncate(arg1, arg2));
4f7f8924 10435#endif
31e31b8a 10436 case TARGET_NR_fchmod:
72eb7ea8 10437 return get_errno(fchmod(arg1, arg2));
c0d472b1 10438#if defined(TARGET_NR_fchmodat)
814d7977 10439 case TARGET_NR_fchmodat:
579a97f7 10440 if (!(p = lock_user_string(arg2)))
2852aafd 10441 return -TARGET_EFAULT;
c0d472b1 10442 ret = get_errno(fchmodat(arg1, p, arg3, 0));
579a97f7 10443 unlock_user(p, arg2, 0);
72eb7ea8 10444 return ret;
814d7977 10445#endif
31e31b8a 10446 case TARGET_NR_getpriority:
95c09828
RH
10447 /* Note that negative values are valid for getpriority, so we must
10448 differentiate based on errno settings. */
10449 errno = 0;
10450 ret = getpriority(arg1, arg2);
10451 if (ret == -1 && errno != 0) {
72eb7ea8 10452 return -host_to_target_errno(errno);
95c09828
RH
10453 }
10454#ifdef TARGET_ALPHA
10455 /* Return value is the unbiased priority. Signal no error. */
0effdc29 10456 cpu_env->ir[IR_V0] = 0;
95c09828
RH
10457#else
10458 /* Return value is a biased priority to avoid negative numbers. */
10459 ret = 20 - ret;
10460#endif
72eb7ea8 10461 return ret;
31e31b8a 10462 case TARGET_NR_setpriority:
72eb7ea8 10463 return get_errno(setpriority(arg1, arg2, arg3));
4f7f8924 10464#ifdef TARGET_NR_statfs
31e31b8a 10465 case TARGET_NR_statfs:
2852aafd
RH
10466 if (!(p = lock_user_string(arg1))) {
10467 return -TARGET_EFAULT;
10468 }
53a5960a
PB
10469 ret = get_errno(statfs(path(p), &stfs));
10470 unlock_user(p, arg1, 0);
31e31b8a
FB
10471 convert_statfs:
10472 if (!is_error(ret)) {
53a5960a 10473 struct target_statfs *target_stfs;
3b46e624 10474
579a97f7 10475 if (!lock_user_struct(VERIFY_WRITE, target_stfs, arg2, 0))
2852aafd 10476 return -TARGET_EFAULT;
579a97f7
FB
10477 __put_user(stfs.f_type, &target_stfs->f_type);
10478 __put_user(stfs.f_bsize, &target_stfs->f_bsize);
10479 __put_user(stfs.f_blocks, &target_stfs->f_blocks);
10480 __put_user(stfs.f_bfree, &target_stfs->f_bfree);
10481 __put_user(stfs.f_bavail, &target_stfs->f_bavail);
10482 __put_user(stfs.f_files, &target_stfs->f_files);
10483 __put_user(stfs.f_ffree, &target_stfs->f_ffree);
10484 __put_user(stfs.f_fsid.__val[0], &target_stfs->f_fsid.val[0]);
10485 __put_user(stfs.f_fsid.__val[1], &target_stfs->f_fsid.val[1]);
10486 __put_user(stfs.f_namelen, &target_stfs->f_namelen);
229d3376 10487 __put_user(stfs.f_frsize, &target_stfs->f_frsize);
d4247ec2
SL
10488#ifdef _STATFS_F_FLAGS
10489 __put_user(stfs.f_flags, &target_stfs->f_flags);
10490#else
10491 __put_user(0, &target_stfs->f_flags);
10492#endif
229d3376 10493 memset(target_stfs->f_spare, 0, sizeof(target_stfs->f_spare));
53a5960a 10494 unlock_user_struct(target_stfs, arg2, 1);
31e31b8a 10495 }
72eb7ea8 10496 return ret;
4f7f8924
AR
10497#endif
10498#ifdef TARGET_NR_fstatfs
31e31b8a 10499 case TARGET_NR_fstatfs:
56c8f68f 10500 ret = get_errno(fstatfs(arg1, &stfs));
31e31b8a 10501 goto convert_statfs;
4f7f8924 10502#endif
56c8f68f
FB
10503#ifdef TARGET_NR_statfs64
10504 case TARGET_NR_statfs64:
2852aafd
RH
10505 if (!(p = lock_user_string(arg1))) {
10506 return -TARGET_EFAULT;
10507 }
53a5960a
PB
10508 ret = get_errno(statfs(path(p), &stfs));
10509 unlock_user(p, arg1, 0);
56c8f68f
FB
10510 convert_statfs64:
10511 if (!is_error(ret)) {
53a5960a 10512 struct target_statfs64 *target_stfs;
3b46e624 10513
579a97f7 10514 if (!lock_user_struct(VERIFY_WRITE, target_stfs, arg3, 0))
2852aafd 10515 return -TARGET_EFAULT;
579a97f7
FB
10516 __put_user(stfs.f_type, &target_stfs->f_type);
10517 __put_user(stfs.f_bsize, &target_stfs->f_bsize);
10518 __put_user(stfs.f_blocks, &target_stfs->f_blocks);
10519 __put_user(stfs.f_bfree, &target_stfs->f_bfree);
10520 __put_user(stfs.f_bavail, &target_stfs->f_bavail);
10521 __put_user(stfs.f_files, &target_stfs->f_files);
10522 __put_user(stfs.f_ffree, &target_stfs->f_ffree);
10523 __put_user(stfs.f_fsid.__val[0], &target_stfs->f_fsid.val[0]);
10524 __put_user(stfs.f_fsid.__val[1], &target_stfs->f_fsid.val[1]);
10525 __put_user(stfs.f_namelen, &target_stfs->f_namelen);
229d3376 10526 __put_user(stfs.f_frsize, &target_stfs->f_frsize);
b94e2b4e
F
10527#ifdef _STATFS_F_FLAGS
10528 __put_user(stfs.f_flags, &target_stfs->f_flags);
10529#else
10530 __put_user(0, &target_stfs->f_flags);
10531#endif
229d3376 10532 memset(target_stfs->f_spare, 0, sizeof(target_stfs->f_spare));
579a97f7 10533 unlock_user_struct(target_stfs, arg3, 1);
56c8f68f 10534 }
72eb7ea8 10535 return ret;
56c8f68f
FB
10536 case TARGET_NR_fstatfs64:
10537 ret = get_errno(fstatfs(arg1, &stfs));
10538 goto convert_statfs64;
10539#endif
e5febef5 10540#ifdef TARGET_NR_socketcall
31e31b8a 10541 case TARGET_NR_socketcall:
72eb7ea8 10542 return do_socketcall(arg1, arg2);
e5febef5 10543#endif
3532fa74
FB
10544#ifdef TARGET_NR_accept
10545 case TARGET_NR_accept:
72eb7ea8 10546 return do_accept4(arg1, arg2, arg3, 0);
a94b4987
PM
10547#endif
10548#ifdef TARGET_NR_accept4
10549 case TARGET_NR_accept4:
72eb7ea8 10550 return do_accept4(arg1, arg2, arg3, arg4);
3532fa74
FB
10551#endif
10552#ifdef TARGET_NR_bind
10553 case TARGET_NR_bind:
72eb7ea8 10554 return do_bind(arg1, arg2, arg3);
3532fa74
FB
10555#endif
10556#ifdef TARGET_NR_connect
10557 case TARGET_NR_connect:
72eb7ea8 10558 return do_connect(arg1, arg2, arg3);
3532fa74
FB
10559#endif
10560#ifdef TARGET_NR_getpeername
10561 case TARGET_NR_getpeername:
72eb7ea8 10562 return do_getpeername(arg1, arg2, arg3);
3532fa74
FB
10563#endif
10564#ifdef TARGET_NR_getsockname
10565 case TARGET_NR_getsockname:
72eb7ea8 10566 return do_getsockname(arg1, arg2, arg3);
3532fa74
FB
10567#endif
10568#ifdef TARGET_NR_getsockopt
10569 case TARGET_NR_getsockopt:
72eb7ea8 10570 return do_getsockopt(arg1, arg2, arg3, arg4, arg5);
3532fa74
FB
10571#endif
10572#ifdef TARGET_NR_listen
10573 case TARGET_NR_listen:
72eb7ea8 10574 return get_errno(listen(arg1, arg2));
3532fa74
FB
10575#endif
10576#ifdef TARGET_NR_recv
10577 case TARGET_NR_recv:
72eb7ea8 10578 return do_recvfrom(arg1, arg2, arg3, arg4, 0, 0);
3532fa74
FB
10579#endif
10580#ifdef TARGET_NR_recvfrom
10581 case TARGET_NR_recvfrom:
72eb7ea8 10582 return do_recvfrom(arg1, arg2, arg3, arg4, arg5, arg6);
3532fa74
FB
10583#endif
10584#ifdef TARGET_NR_recvmsg
10585 case TARGET_NR_recvmsg:
72eb7ea8 10586 return do_sendrecvmsg(arg1, arg2, arg3, 0);
3532fa74
FB
10587#endif
10588#ifdef TARGET_NR_send
10589 case TARGET_NR_send:
72eb7ea8 10590 return do_sendto(arg1, arg2, arg3, arg4, 0, 0);
3532fa74
FB
10591#endif
10592#ifdef TARGET_NR_sendmsg
10593 case TARGET_NR_sendmsg:
72eb7ea8 10594 return do_sendrecvmsg(arg1, arg2, arg3, 1);
3532fa74 10595#endif
f19e00d7
AG
10596#ifdef TARGET_NR_sendmmsg
10597 case TARGET_NR_sendmmsg:
72eb7ea8 10598 return do_sendrecvmmsg(arg1, arg2, arg3, arg4, 1);
859e8a89
AF
10599#endif
10600#ifdef TARGET_NR_recvmmsg
f19e00d7 10601 case TARGET_NR_recvmmsg:
72eb7ea8 10602 return do_sendrecvmmsg(arg1, arg2, arg3, arg4, 0);
f19e00d7 10603#endif
3532fa74
FB
10604#ifdef TARGET_NR_sendto
10605 case TARGET_NR_sendto:
72eb7ea8 10606 return do_sendto(arg1, arg2, arg3, arg4, arg5, arg6);
3532fa74
FB
10607#endif
10608#ifdef TARGET_NR_shutdown
10609 case TARGET_NR_shutdown:
72eb7ea8 10610 return get_errno(shutdown(arg1, arg2));
3532fa74 10611#endif
f894efd1
LV
10612#if defined(TARGET_NR_getrandom) && defined(__NR_getrandom)
10613 case TARGET_NR_getrandom:
10614 p = lock_user(VERIFY_WRITE, arg1, arg2, 0);
10615 if (!p) {
2852aafd 10616 return -TARGET_EFAULT;
f894efd1
LV
10617 }
10618 ret = get_errno(getrandom(p, arg2, arg3));
10619 unlock_user(p, arg1, ret);
72eb7ea8 10620 return ret;
f894efd1 10621#endif
3532fa74
FB
10622#ifdef TARGET_NR_socket
10623 case TARGET_NR_socket:
72eb7ea8 10624 return do_socket(arg1, arg2, arg3);
3532fa74
FB
10625#endif
10626#ifdef TARGET_NR_socketpair
10627 case TARGET_NR_socketpair:
72eb7ea8 10628 return do_socketpair(arg1, arg2, arg3, arg4);
3532fa74
FB
10629#endif
10630#ifdef TARGET_NR_setsockopt
10631 case TARGET_NR_setsockopt:
72eb7ea8 10632 return do_setsockopt(arg1, arg2, arg3, arg4, (socklen_t) arg5);
3532fa74 10633#endif
da2c8ad7 10634#if defined(TARGET_NR_syslog)
31e31b8a 10635 case TARGET_NR_syslog:
da2c8ad7
AM
10636 {
10637 int len = arg2;
7494b0f9 10638
da2c8ad7
AM
10639 switch (arg1) {
10640 case TARGET_SYSLOG_ACTION_CLOSE: /* Close log */
10641 case TARGET_SYSLOG_ACTION_OPEN: /* Open log */
10642 case TARGET_SYSLOG_ACTION_CLEAR: /* Clear ring buffer */
10643 case TARGET_SYSLOG_ACTION_CONSOLE_OFF: /* Disable logging */
10644 case TARGET_SYSLOG_ACTION_CONSOLE_ON: /* Enable logging */
10645 case TARGET_SYSLOG_ACTION_CONSOLE_LEVEL: /* Set messages level */
10646 case TARGET_SYSLOG_ACTION_SIZE_UNREAD: /* Number of chars */
10647 case TARGET_SYSLOG_ACTION_SIZE_BUFFER: /* Size of the buffer */
72eb7ea8 10648 return get_errno(sys_syslog((int)arg1, NULL, (int)arg3));
da2c8ad7
AM
10649 case TARGET_SYSLOG_ACTION_READ: /* Read from log */
10650 case TARGET_SYSLOG_ACTION_READ_CLEAR: /* Read/clear msgs */
10651 case TARGET_SYSLOG_ACTION_READ_ALL: /* Read last messages */
10652 {
da2c8ad7 10653 if (len < 0) {
259841c1 10654 return -TARGET_EINVAL;
da2c8ad7 10655 }
da2c8ad7 10656 if (len == 0) {
72eb7ea8 10657 return 0;
da2c8ad7
AM
10658 }
10659 p = lock_user(VERIFY_WRITE, arg2, arg3, 0);
10660 if (!p) {
259841c1 10661 return -TARGET_EFAULT;
da2c8ad7
AM
10662 }
10663 ret = get_errno(sys_syslog((int)arg1, p, (int)arg3));
10664 unlock_user(p, arg2, arg3);
10665 }
72eb7ea8 10666 return ret;
da2c8ad7 10667 default:
72eb7ea8 10668 return -TARGET_EINVAL;
da2c8ad7
AM
10669 }
10670 }
10671 break;
10672#endif
31e31b8a 10673 case TARGET_NR_setitimer:
66fb9763 10674 {
66fb9763
FB
10675 struct itimerval value, ovalue, *pvalue;
10676
53a5960a 10677 if (arg2) {
66fb9763 10678 pvalue = &value;
788f5ec4
TS
10679 if (copy_from_user_timeval(&pvalue->it_interval, arg2)
10680 || copy_from_user_timeval(&pvalue->it_value,
10681 arg2 + sizeof(struct target_timeval)))
2852aafd 10682 return -TARGET_EFAULT;
66fb9763
FB
10683 } else {
10684 pvalue = NULL;
10685 }
10686 ret = get_errno(setitimer(arg1, pvalue, &ovalue));
53a5960a 10687 if (!is_error(ret) && arg3) {
788f5ec4
TS
10688 if (copy_to_user_timeval(arg3,
10689 &ovalue.it_interval)
10690 || copy_to_user_timeval(arg3 + sizeof(struct target_timeval),
10691 &ovalue.it_value))
2852aafd 10692 return -TARGET_EFAULT;
66fb9763
FB
10693 }
10694 }
72eb7ea8 10695 return ret;
31e31b8a 10696 case TARGET_NR_getitimer:
66fb9763 10697 {
66fb9763 10698 struct itimerval value;
3b46e624 10699
66fb9763 10700 ret = get_errno(getitimer(arg1, &value));
53a5960a 10701 if (!is_error(ret) && arg2) {
788f5ec4
TS
10702 if (copy_to_user_timeval(arg2,
10703 &value.it_interval)
10704 || copy_to_user_timeval(arg2 + sizeof(struct target_timeval),
10705 &value.it_value))
2852aafd 10706 return -TARGET_EFAULT;
66fb9763
FB
10707 }
10708 }
72eb7ea8 10709 return ret;
704eff6c 10710#ifdef TARGET_NR_stat
31e31b8a 10711 case TARGET_NR_stat:
2852aafd
RH
10712 if (!(p = lock_user_string(arg1))) {
10713 return -TARGET_EFAULT;
10714 }
53a5960a
PB
10715 ret = get_errno(stat(path(p), &st));
10716 unlock_user(p, arg1, 0);
31e31b8a 10717 goto do_stat;
704eff6c
CG
10718#endif
10719#ifdef TARGET_NR_lstat
31e31b8a 10720 case TARGET_NR_lstat:
2852aafd
RH
10721 if (!(p = lock_user_string(arg1))) {
10722 return -TARGET_EFAULT;
10723 }
53a5960a
PB
10724 ret = get_errno(lstat(path(p), &st));
10725 unlock_user(p, arg1, 0);
31e31b8a 10726 goto do_stat;
704eff6c 10727#endif
4f7f8924 10728#ifdef TARGET_NR_fstat
31e31b8a
FB
10729 case TARGET_NR_fstat:
10730 {
10731 ret = get_errno(fstat(arg1, &st));
704eff6c 10732#if defined(TARGET_NR_stat) || defined(TARGET_NR_lstat)
31e31b8a 10733 do_stat:
704eff6c 10734#endif
31e31b8a 10735 if (!is_error(ret)) {
53a5960a 10736 struct target_stat *target_st;
e3584658 10737
579a97f7 10738 if (!lock_user_struct(VERIFY_WRITE, target_st, arg2, 0))
2852aafd 10739 return -TARGET_EFAULT;
12727917 10740 memset(target_st, 0, sizeof(*target_st));
d2fd1af7
FB
10741 __put_user(st.st_dev, &target_st->st_dev);
10742 __put_user(st.st_ino, &target_st->st_ino);
10743 __put_user(st.st_mode, &target_st->st_mode);
10744 __put_user(st.st_uid, &target_st->st_uid);
10745 __put_user(st.st_gid, &target_st->st_gid);
10746 __put_user(st.st_nlink, &target_st->st_nlink);
10747 __put_user(st.st_rdev, &target_st->st_rdev);
10748 __put_user(st.st_size, &target_st->st_size);
10749 __put_user(st.st_blksize, &target_st->st_blksize);
10750 __put_user(st.st_blocks, &target_st->st_blocks);
10751 __put_user(st.st_atime, &target_st->target_st_atime);
10752 __put_user(st.st_mtime, &target_st->target_st_mtime);
10753 __put_user(st.st_ctime, &target_st->target_st_ctime);
febf6fad 10754#if defined(HAVE_STRUCT_STAT_ST_ATIM) && defined(TARGET_STAT_HAVE_NSEC)
5f992db6
CYT
10755 __put_user(st.st_atim.tv_nsec,
10756 &target_st->target_st_atime_nsec);
10757 __put_user(st.st_mtim.tv_nsec,
10758 &target_st->target_st_mtime_nsec);
10759 __put_user(st.st_ctim.tv_nsec,
10760 &target_st->target_st_ctime_nsec);
10761#endif
53a5960a 10762 unlock_user_struct(target_st, arg2, 1);
31e31b8a
FB
10763 }
10764 }
72eb7ea8 10765 return ret;
ebc05488 10766#endif
31e31b8a 10767 case TARGET_NR_vhangup:
72eb7ea8 10768 return get_errno(vhangup());
42ad6ae9
FB
10769#ifdef TARGET_NR_syscall
10770 case TARGET_NR_syscall:
72eb7ea8
RH
10771 return do_syscall(cpu_env, arg1 & 0xffff, arg2, arg3, arg4, arg5,
10772 arg6, arg7, arg8, 0);
ebc05488 10773#endif
859e8a89 10774#if defined(TARGET_NR_wait4)
31e31b8a
FB
10775 case TARGET_NR_wait4:
10776 {
10777 int status;
992f48a0 10778 abi_long status_ptr = arg2;
31e31b8a 10779 struct rusage rusage, *rusage_ptr;
992f48a0 10780 abi_ulong target_rusage = arg4;
a39fb273 10781 abi_long rusage_err;
31e31b8a
FB
10782 if (target_rusage)
10783 rusage_ptr = &rusage;
10784 else
10785 rusage_ptr = NULL;
4af80a37 10786 ret = get_errno(safe_wait4(arg1, &status, arg3, rusage_ptr));
31e31b8a 10787 if (!is_error(ret)) {
5379557b 10788 if (status_ptr && ret) {
1d9d8b55 10789 status = host_to_target_waitstatus(status);
2f619698 10790 if (put_user_s32(status, status_ptr))
2852aafd 10791 return -TARGET_EFAULT;
31e31b8a 10792 }
a39fb273
PJ
10793 if (target_rusage) {
10794 rusage_err = host_to_target_rusage(target_rusage, &rusage);
10795 if (rusage_err) {
10796 ret = rusage_err;
10797 }
10798 }
31e31b8a
FB
10799 }
10800 }
72eb7ea8 10801 return ret;
859e8a89 10802#endif
e5febef5 10803#ifdef TARGET_NR_swapoff
31e31b8a 10804 case TARGET_NR_swapoff:
579a97f7 10805 if (!(p = lock_user_string(arg1)))
2852aafd 10806 return -TARGET_EFAULT;
53a5960a
PB
10807 ret = get_errno(swapoff(p));
10808 unlock_user(p, arg1, 0);
72eb7ea8 10809 return ret;
e5febef5 10810#endif
31e31b8a 10811 case TARGET_NR_sysinfo:
a5448a7d 10812 {
53a5960a 10813 struct target_sysinfo *target_value;
a5448a7d
FB
10814 struct sysinfo value;
10815 ret = get_errno(sysinfo(&value));
53a5960a 10816 if (!is_error(ret) && arg1)
a5448a7d 10817 {
579a97f7 10818 if (!lock_user_struct(VERIFY_WRITE, target_value, arg1, 0))
2852aafd 10819 return -TARGET_EFAULT;
a5448a7d
FB
10820 __put_user(value.uptime, &target_value->uptime);
10821 __put_user(value.loads[0], &target_value->loads[0]);
10822 __put_user(value.loads[1], &target_value->loads[1]);
10823 __put_user(value.loads[2], &target_value->loads[2]);
10824 __put_user(value.totalram, &target_value->totalram);
10825 __put_user(value.freeram, &target_value->freeram);
10826 __put_user(value.sharedram, &target_value->sharedram);
10827 __put_user(value.bufferram, &target_value->bufferram);
10828 __put_user(value.totalswap, &target_value->totalswap);
10829 __put_user(value.freeswap, &target_value->freeswap);
10830 __put_user(value.procs, &target_value->procs);
10831 __put_user(value.totalhigh, &target_value->totalhigh);
10832 __put_user(value.freehigh, &target_value->freehigh);
10833 __put_user(value.mem_unit, &target_value->mem_unit);
53a5960a 10834 unlock_user_struct(target_value, arg1, 1);
a5448a7d
FB
10835 }
10836 }
72eb7ea8 10837 return ret;
e5febef5 10838#ifdef TARGET_NR_ipc
31e31b8a 10839 case TARGET_NR_ipc:
72eb7ea8 10840 return do_ipc(cpu_env, arg1, arg2, arg3, arg4, arg5, arg6);
e5febef5 10841#endif
e5289087
AJ
10842#ifdef TARGET_NR_semget
10843 case TARGET_NR_semget:
72eb7ea8 10844 return get_errno(semget(arg1, arg2, arg3));
e5289087
AJ
10845#endif
10846#ifdef TARGET_NR_semop
10847 case TARGET_NR_semop:
cac46eb0 10848 return do_semtimedop(arg1, arg2, arg3, 0, false);
d8c08b1e
MK
10849#endif
10850#ifdef TARGET_NR_semtimedop
10851 case TARGET_NR_semtimedop:
cac46eb0
FB
10852 return do_semtimedop(arg1, arg2, arg3, arg4, false);
10853#endif
10854#ifdef TARGET_NR_semtimedop_time64
10855 case TARGET_NR_semtimedop_time64:
10856 return do_semtimedop(arg1, arg2, arg3, arg4, true);
e5289087
AJ
10857#endif
10858#ifdef TARGET_NR_semctl
10859 case TARGET_NR_semctl:
72eb7ea8 10860 return do_semctl(arg1, arg2, arg3, arg4);
e5289087 10861#endif
eeb438c1
AJ
10862#ifdef TARGET_NR_msgctl
10863 case TARGET_NR_msgctl:
72eb7ea8 10864 return do_msgctl(arg1, arg2, arg3);
eeb438c1
AJ
10865#endif
10866#ifdef TARGET_NR_msgget
10867 case TARGET_NR_msgget:
72eb7ea8 10868 return get_errno(msgget(arg1, arg2));
eeb438c1
AJ
10869#endif
10870#ifdef TARGET_NR_msgrcv
10871 case TARGET_NR_msgrcv:
72eb7ea8 10872 return do_msgrcv(arg1, arg2, arg3, arg4, arg5);
eeb438c1
AJ
10873#endif
10874#ifdef TARGET_NR_msgsnd
10875 case TARGET_NR_msgsnd:
72eb7ea8 10876 return do_msgsnd(arg1, arg2, arg3, arg4);
88a8c984
RV
10877#endif
10878#ifdef TARGET_NR_shmget
10879 case TARGET_NR_shmget:
72eb7ea8 10880 return get_errno(shmget(arg1, arg2, arg3));
88a8c984
RV
10881#endif
10882#ifdef TARGET_NR_shmctl
10883 case TARGET_NR_shmctl:
72eb7ea8 10884 return do_shmctl(arg1, arg2, arg3);
88a8c984
RV
10885#endif
10886#ifdef TARGET_NR_shmat
10887 case TARGET_NR_shmat:
225a206c 10888 return target_shmat(cpu_env, arg1, arg2, arg3);
88a8c984
RV
10889#endif
10890#ifdef TARGET_NR_shmdt
10891 case TARGET_NR_shmdt:
225a206c 10892 return target_shmdt(arg1);
eeb438c1 10893#endif
31e31b8a 10894 case TARGET_NR_fsync:
72eb7ea8 10895 return get_errno(fsync(arg1));
31e31b8a 10896 case TARGET_NR_clone:
4ce6243d
PM
10897 /* Linux manages to have three different orderings for its
10898 * arguments to clone(); the BACKWARDS and BACKWARDS2 defines
10899 * match the kernel's CONFIG_CLONE_* settings.
10900 * Microblaze is further special in that it uses a sixth
10901 * implicit argument to clone for the TLS pointer.
10902 */
10903#if defined(TARGET_MICROBLAZE)
a5b3bdcb 10904 ret = get_errno(do_fork(cpu_env, arg1, arg2, arg4, arg6, arg5));
4ce6243d
PM
10905#elif defined(TARGET_CLONE_BACKWARDS)
10906 ret = get_errno(do_fork(cpu_env, arg1, arg2, arg3, arg4, arg5));
10907#elif defined(TARGET_CLONE_BACKWARDS2)
a4c075f1 10908 ret = get_errno(do_fork(cpu_env, arg2, arg1, arg3, arg5, arg4));
0b6d3ae0 10909#else
4ce6243d 10910 ret = get_errno(do_fork(cpu_env, arg1, arg2, arg3, arg5, arg4));
0b6d3ae0 10911#endif
72eb7ea8 10912 return ret;
ec86b0fb
FB
10913#ifdef __NR_exit_group
10914 /* new thread calls */
10915 case TARGET_NR_exit_group:
708b6a64 10916 preexit_cleanup(cpu_env, arg1);
72eb7ea8 10917 return get_errno(exit_group(arg1));
ec86b0fb 10918#endif
31e31b8a 10919 case TARGET_NR_setdomainname:
579a97f7 10920 if (!(p = lock_user_string(arg1)))
2852aafd 10921 return -TARGET_EFAULT;
53a5960a
PB
10922 ret = get_errno(setdomainname(p, arg2));
10923 unlock_user(p, arg1, 0);
72eb7ea8 10924 return ret;
31e31b8a
FB
10925 case TARGET_NR_uname:
10926 /* no need to transcode because we use the linux syscall */
29e619b1
FB
10927 {
10928 struct new_utsname * buf;
3b46e624 10929
579a97f7 10930 if (!lock_user_struct(VERIFY_WRITE, buf, arg1, 0))
2852aafd 10931 return -TARGET_EFAULT;
29e619b1
FB
10932 ret = get_errno(sys_uname(buf));
10933 if (!is_error(ret)) {
332c9781 10934 /* Overwrite the native machine name with whatever is being
29e619b1 10935 emulated. */
871f95c6
PMD
10936 g_strlcpy(buf->machine, cpu_to_uname_machine(cpu_env),
10937 sizeof(buf->machine));
c5937220 10938 /* Allow the user to override the reported release. */
332c9781
PM
10939 if (qemu_uname_release && *qemu_uname_release) {
10940 g_strlcpy(buf->release, qemu_uname_release,
10941 sizeof(buf->release));
10942 }
29e619b1 10943 }
53a5960a 10944 unlock_user_struct(buf, arg1, 1);
29e619b1 10945 }
72eb7ea8 10946 return ret;
6dbad63e 10947#ifdef TARGET_I386
31e31b8a 10948 case TARGET_NR_modify_ldt:
72eb7ea8 10949 return do_modify_ldt(cpu_env, arg1, arg2, arg3);
84409ddb 10950#if !defined(TARGET_X86_64)
5cd4393b 10951 case TARGET_NR_vm86:
72eb7ea8 10952 return do_vm86(cpu_env, arg1, arg2);
84409ddb 10953#endif
6dbad63e 10954#endif
859e8a89 10955#if defined(TARGET_NR_adjtimex)
31e31b8a 10956 case TARGET_NR_adjtimex:
19f59bce
AM
10957 {
10958 struct timex host_buf;
10959
10960 if (target_to_host_timex(&host_buf, arg1) != 0) {
2852aafd 10961 return -TARGET_EFAULT;
19f59bce
AM
10962 }
10963 ret = get_errno(adjtimex(&host_buf));
10964 if (!is_error(ret)) {
10965 if (host_to_target_timex(arg1, &host_buf) != 0) {
2852aafd 10966 return -TARGET_EFAULT;
19f59bce
AM
10967 }
10968 }
10969 }
72eb7ea8 10970 return ret;
859e8a89 10971#endif
38860a03
AM
10972#if defined(TARGET_NR_clock_adjtime) && defined(CONFIG_CLOCK_ADJTIME)
10973 case TARGET_NR_clock_adjtime:
10974 {
aab74610 10975 struct timex htx;
38860a03 10976
aab74610 10977 if (target_to_host_timex(&htx, arg2) != 0) {
2852aafd 10978 return -TARGET_EFAULT;
38860a03 10979 }
aab74610
PM
10980 ret = get_errno(clock_adjtime(arg1, &htx));
10981 if (!is_error(ret) && host_to_target_timex(arg2, &htx)) {
10982 return -TARGET_EFAULT;
38860a03
AM
10983 }
10984 }
72eb7ea8 10985 return ret;
6ac03b2c
FB
10986#endif
10987#if defined(TARGET_NR_clock_adjtime64) && defined(CONFIG_CLOCK_ADJTIME)
10988 case TARGET_NR_clock_adjtime64:
10989 {
10990 struct timex htx;
10991
10992 if (target_to_host_timex64(&htx, arg2) != 0) {
10993 return -TARGET_EFAULT;
10994 }
10995 ret = get_errno(clock_adjtime(arg1, &htx));
10996 if (!is_error(ret) && host_to_target_timex64(arg2, &htx)) {
10997 return -TARGET_EFAULT;
10998 }
10999 }
11000 return ret;
38860a03 11001#endif
31e31b8a 11002 case TARGET_NR_getpgid:
72eb7ea8 11003 return get_errno(getpgid(arg1));
31e31b8a 11004 case TARGET_NR_fchdir:
72eb7ea8 11005 return get_errno(fchdir(arg1));
31e31b8a 11006 case TARGET_NR_personality:
72eb7ea8 11007 return get_errno(personality(arg1));
7a3148a9 11008#ifdef TARGET_NR__llseek /* Not on alpha */
31e31b8a
FB
11009 case TARGET_NR__llseek:
11010 {
0c1592d9 11011 int64_t res;
d35b261c 11012#if !defined(__NR_llseek)
9fea273c 11013 res = lseek(arg1, ((uint64_t)arg2 << 32) | (abi_ulong)arg3, arg5);
0c1592d9
PM
11014 if (res == -1) {
11015 ret = get_errno(res);
11016 } else {
11017 ret = 0;
11018 }
4f2ac237 11019#else
31e31b8a 11020 ret = get_errno(_llseek(arg1, arg2, arg3, &res, arg5));
4f2ac237 11021#endif
0c1592d9 11022 if ((ret == 0) && put_user_s64(res, arg4)) {
2852aafd 11023 return -TARGET_EFAULT;
0c1592d9 11024 }
31e31b8a 11025 }
72eb7ea8 11026 return ret;
7a3148a9 11027#endif
704eff6c 11028#ifdef TARGET_NR_getdents
31e31b8a 11029 case TARGET_NR_getdents:
fd08ddb9 11030 return do_getdents(arg1, arg2, arg3);
704eff6c 11031#endif /* TARGET_NR_getdents */
3ae43202 11032#if defined(TARGET_NR_getdents64) && defined(__NR_getdents64)
dab2ed99 11033 case TARGET_NR_getdents64:
fd08ddb9 11034 return do_getdents64(arg1, arg2, arg3);
a541f297 11035#endif /* TARGET_NR_getdents64 */
9468a5d4 11036#if defined(TARGET_NR__newselect)
31e31b8a 11037 case TARGET_NR__newselect:
72eb7ea8 11038 return do_select(arg1, arg2, arg3, arg4, arg5);
e5febef5 11039#endif
e5ce9688 11040#ifdef TARGET_NR_poll
9de5e440 11041 case TARGET_NR_poll:
e5ce9688
FB
11042 return do_ppoll(arg1, arg2, arg3, arg4, arg5, false, false);
11043#endif
11044#ifdef TARGET_NR_ppoll
d8035d4c 11045 case TARGET_NR_ppoll:
e5ce9688
FB
11046 return do_ppoll(arg1, arg2, arg3, arg4, arg5, true, false);
11047#endif
11048#ifdef TARGET_NR_ppoll_time64
11049 case TARGET_NR_ppoll_time64:
11050 return do_ppoll(arg1, arg2, arg3, arg4, arg5, true, true);
e5febef5 11051#endif
31e31b8a 11052 case TARGET_NR_flock:
9de5e440
FB
11053 /* NOTE: the flock constant seems to be the same for every
11054 Linux platform */
72eb7ea8 11055 return get_errno(safe_flock(arg1, arg2));
31e31b8a
FB
11056 case TARGET_NR_readv:
11057 {
f287b2c2
RH
11058 struct iovec *vec = lock_iovec(VERIFY_WRITE, arg2, arg3, 0);
11059 if (vec != NULL) {
918c03ed 11060 ret = get_errno(safe_readv(arg1, vec, arg3));
f287b2c2
RH
11061 unlock_iovec(vec, arg2, arg3, 1);
11062 } else {
11063 ret = -host_to_target_errno(errno);
11064 }
31e31b8a 11065 }
72eb7ea8 11066 return ret;
31e31b8a
FB
11067 case TARGET_NR_writev:
11068 {
f287b2c2
RH
11069 struct iovec *vec = lock_iovec(VERIFY_READ, arg2, arg3, 1);
11070 if (vec != NULL) {
918c03ed 11071 ret = get_errno(safe_writev(arg1, vec, arg3));
f287b2c2
RH
11072 unlock_iovec(vec, arg2, arg3, 0);
11073 } else {
11074 ret = -host_to_target_errno(errno);
11075 }
31e31b8a 11076 }
72eb7ea8 11077 return ret;
0f26386c
DJ
11078#if defined(TARGET_NR_preadv)
11079 case TARGET_NR_preadv:
11080 {
11081 struct iovec *vec = lock_iovec(VERIFY_WRITE, arg2, arg3, 0);
11082 if (vec != NULL) {
9ac22517
MF
11083 unsigned long low, high;
11084
11085 target_to_host_low_high(arg4, arg5, &low, &high);
11086 ret = get_errno(safe_preadv(arg1, vec, arg3, low, high));
0f26386c
DJ
11087 unlock_iovec(vec, arg2, arg3, 1);
11088 } else {
11089 ret = -host_to_target_errno(errno);
f8d00fba
DJ
11090 }
11091 }
72eb7ea8 11092 return ret;
f8d00fba
DJ
11093#endif
11094#if defined(TARGET_NR_pwritev)
11095 case TARGET_NR_pwritev:
11096 {
11097 struct iovec *vec = lock_iovec(VERIFY_READ, arg2, arg3, 1);
11098 if (vec != NULL) {
9ac22517
MF
11099 unsigned long low, high;
11100
11101 target_to_host_low_high(arg4, arg5, &low, &high);
11102 ret = get_errno(safe_pwritev(arg1, vec, arg3, low, high));
f8d00fba
DJ
11103 unlock_iovec(vec, arg2, arg3, 0);
11104 } else {
11105 ret = -host_to_target_errno(errno);
0f26386c
DJ
11106 }
11107 }
72eb7ea8 11108 return ret;
0f26386c 11109#endif
31e31b8a 11110 case TARGET_NR_getsid:
72eb7ea8 11111 return get_errno(getsid(arg1));
7a3148a9 11112#if defined(TARGET_NR_fdatasync) /* Not on alpha (osf_datasync ?) */
31e31b8a 11113 case TARGET_NR_fdatasync:
72eb7ea8 11114 return get_errno(fdatasync(arg1));
704eff6c 11115#endif
737de1d1
MF
11116 case TARGET_NR_sched_getaffinity:
11117 {
11118 unsigned int mask_size;
11119 unsigned long *mask;
11120
11121 /*
11122 * sched_getaffinity needs multiples of ulong, so need to take
11123 * care of mismatches between target ulong and host ulong sizes.
11124 */
11125 if (arg2 & (sizeof(abi_ulong) - 1)) {
72eb7ea8 11126 return -TARGET_EINVAL;
737de1d1
MF
11127 }
11128 mask_size = (arg2 + (sizeof(*mask) - 1)) & ~(sizeof(*mask) - 1);
11129
11130 mask = alloca(mask_size);
2e0a8713 11131 memset(mask, 0, mask_size);
737de1d1
MF
11132 ret = get_errno(sys_sched_getaffinity(arg1, mask_size, mask));
11133
11134 if (!is_error(ret)) {
be3bd286
PM
11135 if (ret > arg2) {
11136 /* More data returned than the caller's buffer will fit.
11137 * This only happens if sizeof(abi_long) < sizeof(long)
11138 * and the caller passed us a buffer holding an odd number
11139 * of abi_longs. If the host kernel is actually using the
11140 * extra 4 bytes then fail EINVAL; otherwise we can just
11141 * ignore them and only copy the interesting part.
11142 */
11143 int numcpus = sysconf(_SC_NPROCESSORS_CONF);
11144 if (numcpus > arg2 * 8) {
72eb7ea8 11145 return -TARGET_EINVAL;
be3bd286
PM
11146 }
11147 ret = arg2;
11148 }
11149
5fdefcf8 11150 if (host_to_target_cpu_mask(mask, mask_size, arg3, ret)) {
2852aafd 11151 return -TARGET_EFAULT;
5fdefcf8 11152 }
737de1d1
MF
11153 }
11154 }
72eb7ea8 11155 return ret;
737de1d1
MF
11156 case TARGET_NR_sched_setaffinity:
11157 {
11158 unsigned int mask_size;
11159 unsigned long *mask;
11160
11161 /*
11162 * sched_setaffinity needs multiples of ulong, so need to take
11163 * care of mismatches between target ulong and host ulong sizes.
11164 */
11165 if (arg2 & (sizeof(abi_ulong) - 1)) {
72eb7ea8 11166 return -TARGET_EINVAL;
737de1d1
MF
11167 }
11168 mask_size = (arg2 + (sizeof(*mask) - 1)) & ~(sizeof(*mask) - 1);
737de1d1 11169 mask = alloca(mask_size);
2e0a8713
ST
11170
11171 ret = target_to_host_cpu_mask(mask, mask_size, arg3, arg2);
11172 if (ret) {
72eb7ea8 11173 return ret;
737de1d1 11174 }
737de1d1 11175
72eb7ea8 11176 return get_errno(sys_sched_setaffinity(arg1, mask_size, mask));
737de1d1 11177 }
b827c3ed
ST
11178 case TARGET_NR_getcpu:
11179 {
9962b7c2
LV
11180 unsigned cpuid, node;
11181 ret = get_errno(sys_getcpu(arg1 ? &cpuid : NULL,
b827c3ed
ST
11182 arg2 ? &node : NULL,
11183 NULL));
11184 if (is_error(ret)) {
259841c1 11185 return ret;
b827c3ed 11186 }
9962b7c2 11187 if (arg1 && put_user_u32(cpuid, arg1)) {
2852aafd 11188 return -TARGET_EFAULT;
b827c3ed
ST
11189 }
11190 if (arg2 && put_user_u32(node, arg2)) {
2852aafd 11191 return -TARGET_EFAULT;
b827c3ed
ST
11192 }
11193 }
72eb7ea8 11194 return ret;
31e31b8a 11195 case TARGET_NR_sched_setparam:
5cd4393b 11196 {
407a119b 11197 struct target_sched_param *target_schp;
5cd4393b 11198 struct sched_param schp;
53a5960a 11199
a1d5c5b2
TM
11200 if (arg2 == 0) {
11201 return -TARGET_EINVAL;
11202 }
407a119b 11203 if (!lock_user_struct(VERIFY_READ, target_schp, arg2, 1)) {
2852aafd 11204 return -TARGET_EFAULT;
407a119b 11205 }
5cd4393b 11206 schp.sched_priority = tswap32(target_schp->sched_priority);
53a5960a 11207 unlock_user_struct(target_schp, arg2, 0);
407a119b 11208 return get_errno(sys_sched_setparam(arg1, &schp));
5cd4393b 11209 }
31e31b8a 11210 case TARGET_NR_sched_getparam:
5cd4393b 11211 {
407a119b 11212 struct target_sched_param *target_schp;
5cd4393b 11213 struct sched_param schp;
a1d5c5b2
TM
11214
11215 if (arg2 == 0) {
11216 return -TARGET_EINVAL;
11217 }
407a119b 11218 ret = get_errno(sys_sched_getparam(arg1, &schp));
5cd4393b 11219 if (!is_error(ret)) {
407a119b 11220 if (!lock_user_struct(VERIFY_WRITE, target_schp, arg2, 0)) {
2852aafd 11221 return -TARGET_EFAULT;
407a119b 11222 }
5cd4393b 11223 target_schp->sched_priority = tswap32(schp.sched_priority);
53a5960a 11224 unlock_user_struct(target_schp, arg2, 1);
5cd4393b
FB
11225 }
11226 }
72eb7ea8 11227 return ret;
31e31b8a 11228 case TARGET_NR_sched_setscheduler:
5cd4393b 11229 {
407a119b 11230 struct target_sched_param *target_schp;
5cd4393b 11231 struct sched_param schp;
a1d5c5b2
TM
11232 if (arg3 == 0) {
11233 return -TARGET_EINVAL;
11234 }
407a119b 11235 if (!lock_user_struct(VERIFY_READ, target_schp, arg3, 1)) {
2852aafd 11236 return -TARGET_EFAULT;
407a119b 11237 }
5cd4393b 11238 schp.sched_priority = tswap32(target_schp->sched_priority);
53a5960a 11239 unlock_user_struct(target_schp, arg3, 0);
407a119b 11240 return get_errno(sys_sched_setscheduler(arg1, arg2, &schp));
5cd4393b 11241 }
31e31b8a 11242 case TARGET_NR_sched_getscheduler:
407a119b 11243 return get_errno(sys_sched_getscheduler(arg1));
45ad761c
TT
11244 case TARGET_NR_sched_getattr:
11245 {
11246 struct target_sched_attr *target_scha;
11247 struct sched_attr scha;
11248 if (arg2 == 0) {
11249 return -TARGET_EINVAL;
11250 }
11251 if (arg3 > sizeof(scha)) {
11252 arg3 = sizeof(scha);
11253 }
11254 ret = get_errno(sys_sched_getattr(arg1, &scha, arg3, arg4));
11255 if (!is_error(ret)) {
11256 target_scha = lock_user(VERIFY_WRITE, arg2, arg3, 0);
11257 if (!target_scha) {
11258 return -TARGET_EFAULT;
11259 }
11260 target_scha->size = tswap32(scha.size);
11261 target_scha->sched_policy = tswap32(scha.sched_policy);
11262 target_scha->sched_flags = tswap64(scha.sched_flags);
11263 target_scha->sched_nice = tswap32(scha.sched_nice);
11264 target_scha->sched_priority = tswap32(scha.sched_priority);
11265 target_scha->sched_runtime = tswap64(scha.sched_runtime);
11266 target_scha->sched_deadline = tswap64(scha.sched_deadline);
11267 target_scha->sched_period = tswap64(scha.sched_period);
11268 if (scha.size > offsetof(struct sched_attr, sched_util_min)) {
11269 target_scha->sched_util_min = tswap32(scha.sched_util_min);
11270 target_scha->sched_util_max = tswap32(scha.sched_util_max);
11271 }
11272 unlock_user(target_scha, arg2, arg3);
11273 }
11274 return ret;
11275 }
11276 case TARGET_NR_sched_setattr:
11277 {
11278 struct target_sched_attr *target_scha;
11279 struct sched_attr scha;
11280 uint32_t size;
11281 int zeroed;
11282 if (arg2 == 0) {
11283 return -TARGET_EINVAL;
11284 }
11285 if (get_user_u32(size, arg2)) {
11286 return -TARGET_EFAULT;
11287 }
11288 if (!size) {
11289 size = offsetof(struct target_sched_attr, sched_util_min);
11290 }
11291 if (size < offsetof(struct target_sched_attr, sched_util_min)) {
11292 if (put_user_u32(sizeof(struct target_sched_attr), arg2)) {
11293 return -TARGET_EFAULT;
11294 }
11295 return -TARGET_E2BIG;
11296 }
11297
11298 zeroed = check_zeroed_user(arg2, sizeof(struct target_sched_attr), size);
11299 if (zeroed < 0) {
11300 return zeroed;
11301 } else if (zeroed == 0) {
11302 if (put_user_u32(sizeof(struct target_sched_attr), arg2)) {
11303 return -TARGET_EFAULT;
11304 }
11305 return -TARGET_E2BIG;
11306 }
11307 if (size > sizeof(struct target_sched_attr)) {
11308 size = sizeof(struct target_sched_attr);
11309 }
11310
11311 target_scha = lock_user(VERIFY_READ, arg2, size, 1);
11312 if (!target_scha) {
11313 return -TARGET_EFAULT;
11314 }
11315 scha.size = size;
11316 scha.sched_policy = tswap32(target_scha->sched_policy);
11317 scha.sched_flags = tswap64(target_scha->sched_flags);
11318 scha.sched_nice = tswap32(target_scha->sched_nice);
11319 scha.sched_priority = tswap32(target_scha->sched_priority);
11320 scha.sched_runtime = tswap64(target_scha->sched_runtime);
11321 scha.sched_deadline = tswap64(target_scha->sched_deadline);
11322 scha.sched_period = tswap64(target_scha->sched_period);
11323 if (size > offsetof(struct target_sched_attr, sched_util_min)) {
11324 scha.sched_util_min = tswap32(target_scha->sched_util_min);
11325 scha.sched_util_max = tswap32(target_scha->sched_util_max);
11326 }
11327 unlock_user(target_scha, arg2, 0);
11328 return get_errno(sys_sched_setattr(arg1, &scha, arg3));
11329 }
31e31b8a 11330 case TARGET_NR_sched_yield:
72eb7ea8 11331 return get_errno(sched_yield());
31e31b8a 11332 case TARGET_NR_sched_get_priority_max:
72eb7ea8 11333 return get_errno(sched_get_priority_max(arg1));
31e31b8a 11334 case TARGET_NR_sched_get_priority_min:
72eb7ea8 11335 return get_errno(sched_get_priority_min(arg1));
859e8a89 11336#ifdef TARGET_NR_sched_rr_get_interval
31e31b8a 11337 case TARGET_NR_sched_rr_get_interval:
5cd4393b 11338 {
5cd4393b
FB
11339 struct timespec ts;
11340 ret = get_errno(sched_rr_get_interval(arg1, &ts));
11341 if (!is_error(ret)) {
d4290c40 11342 ret = host_to_target_timespec(arg2, &ts);
5cd4393b
FB
11343 }
11344 }
72eb7ea8 11345 return ret;
859e8a89 11346#endif
ddcbde15
FB
11347#ifdef TARGET_NR_sched_rr_get_interval_time64
11348 case TARGET_NR_sched_rr_get_interval_time64:
11349 {
11350 struct timespec ts;
11351 ret = get_errno(sched_rr_get_interval(arg1, &ts));
11352 if (!is_error(ret)) {
11353 ret = host_to_target_timespec64(arg2, &ts);
11354 }
11355 }
11356 return ret;
11357#endif
859e8a89 11358#if defined(TARGET_NR_nanosleep)
31e31b8a 11359 case TARGET_NR_nanosleep:
1b6b029e 11360 {
1b6b029e 11361 struct timespec req, rem;
53a5960a 11362 target_to_host_timespec(&req, arg1);
9e518226 11363 ret = get_errno(safe_nanosleep(&req, &rem));
53a5960a
PB
11364 if (is_error(ret) && arg2) {
11365 host_to_target_timespec(arg2, &rem);
1b6b029e
FB
11366 }
11367 }
72eb7ea8 11368 return ret;
859e8a89 11369#endif
31e31b8a 11370 case TARGET_NR_prctl:
87e9bf23 11371 return do_prctl(cpu_env, arg1, arg2, arg3, arg4, arg5);
39b9aae1 11372 break;
d2fd1af7
FB
11373#ifdef TARGET_NR_arch_prctl
11374 case TARGET_NR_arch_prctl:
72eb7ea8 11375 return do_arch_prctl(cpu_env, arg1, arg2);
d2fd1af7 11376#endif
f2c7ba15
AJ
11377#ifdef TARGET_NR_pread64
11378 case TARGET_NR_pread64:
8bf8e9df 11379 if (regpairs_aligned(cpu_env, num)) {
ae017a5b
AG
11380 arg4 = arg5;
11381 arg5 = arg6;
11382 }
2bd3f899
PM
11383 if (arg2 == 0 && arg3 == 0) {
11384 /* Special-case NULL buffer and zero length, which should succeed */
11385 p = 0;
11386 } else {
11387 p = lock_user(VERIFY_WRITE, arg2, arg3, 0);
11388 if (!p) {
11389 return -TARGET_EFAULT;
11390 }
11391 }
f2c7ba15
AJ
11392 ret = get_errno(pread64(arg1, p, arg3, target_offset64(arg4, arg5)));
11393 unlock_user(p, arg2, ret);
72eb7ea8 11394 return ret;
f2c7ba15 11395 case TARGET_NR_pwrite64:
8bf8e9df 11396 if (regpairs_aligned(cpu_env, num)) {
ae017a5b
AG
11397 arg4 = arg5;
11398 arg5 = arg6;
11399 }
2bd3f899
PM
11400 if (arg2 == 0 && arg3 == 0) {
11401 /* Special-case NULL buffer and zero length, which should succeed */
11402 p = 0;
11403 } else {
11404 p = lock_user(VERIFY_READ, arg2, arg3, 1);
11405 if (!p) {
11406 return -TARGET_EFAULT;
11407 }
11408 }
f2c7ba15
AJ
11409 ret = get_errno(pwrite64(arg1, p, arg3, target_offset64(arg4, arg5)));
11410 unlock_user(p, arg2, 0);
72eb7ea8 11411 return ret;
67867308 11412#endif
31e31b8a 11413 case TARGET_NR_getcwd:
579a97f7 11414 if (!(p = lock_user(VERIFY_WRITE, arg1, arg2, 0)))
2852aafd 11415 return -TARGET_EFAULT;
53a5960a
PB
11416 ret = get_errno(sys_getcwd1(p, arg2));
11417 unlock_user(p, arg1, ret);
72eb7ea8 11418 return ret;
31e31b8a
FB
11419 case TARGET_NR_capget:
11420 case TARGET_NR_capset:
e0eb210e
PM
11421 {
11422 struct target_user_cap_header *target_header;
11423 struct target_user_cap_data *target_data = NULL;
11424 struct __user_cap_header_struct header;
11425 struct __user_cap_data_struct data[2];
11426 struct __user_cap_data_struct *dataptr = NULL;
11427 int i, target_datalen;
11428 int data_items = 1;
11429
11430 if (!lock_user_struct(VERIFY_WRITE, target_header, arg1, 1)) {
2852aafd 11431 return -TARGET_EFAULT;
e0eb210e
PM
11432 }
11433 header.version = tswap32(target_header->version);
11434 header.pid = tswap32(target_header->pid);
11435
ec864874 11436 if (header.version != _LINUX_CAPABILITY_VERSION) {
e0eb210e
PM
11437 /* Version 2 and up takes pointer to two user_data structs */
11438 data_items = 2;
11439 }
11440
11441 target_datalen = sizeof(*target_data) * data_items;
11442
11443 if (arg2) {
11444 if (num == TARGET_NR_capget) {
11445 target_data = lock_user(VERIFY_WRITE, arg2, target_datalen, 0);
11446 } else {
11447 target_data = lock_user(VERIFY_READ, arg2, target_datalen, 1);
11448 }
11449 if (!target_data) {
11450 unlock_user_struct(target_header, arg1, 0);
2852aafd 11451 return -TARGET_EFAULT;
e0eb210e
PM
11452 }
11453
11454 if (num == TARGET_NR_capset) {
11455 for (i = 0; i < data_items; i++) {
11456 data[i].effective = tswap32(target_data[i].effective);
11457 data[i].permitted = tswap32(target_data[i].permitted);
11458 data[i].inheritable = tswap32(target_data[i].inheritable);
11459 }
11460 }
11461
11462 dataptr = data;
11463 }
11464
11465 if (num == TARGET_NR_capget) {
11466 ret = get_errno(capget(&header, dataptr));
11467 } else {
11468 ret = get_errno(capset(&header, dataptr));
11469 }
11470
11471 /* The kernel always updates version for both capget and capset */
11472 target_header->version = tswap32(header.version);
11473 unlock_user_struct(target_header, arg1, 1);
11474
11475 if (arg2) {
11476 if (num == TARGET_NR_capget) {
11477 for (i = 0; i < data_items; i++) {
11478 target_data[i].effective = tswap32(data[i].effective);
11479 target_data[i].permitted = tswap32(data[i].permitted);
11480 target_data[i].inheritable = tswap32(data[i].inheritable);
11481 }
11482 unlock_user(target_data, arg2, target_datalen);
11483 } else {
11484 unlock_user(target_data, arg2, 0);
11485 }
11486 }
72eb7ea8 11487 return ret;
e0eb210e 11488 }
31e31b8a 11489 case TARGET_NR_sigaltstack:
6b208755 11490 return do_sigaltstack(arg1, arg2, cpu_env);
a8fd1aba
PM
11491
11492#ifdef CONFIG_SENDFILE
4f7f8924 11493#ifdef TARGET_NR_sendfile
a8fd1aba
PM
11494 case TARGET_NR_sendfile:
11495 {
11496 off_t *offp = NULL;
11497 off_t off;
11498 if (arg3) {
11499 ret = get_user_sal(off, arg3);
11500 if (is_error(ret)) {
72eb7ea8 11501 return ret;
a8fd1aba
PM
11502 }
11503 offp = &off;
11504 }
11505 ret = get_errno(sendfile(arg1, arg2, offp, arg4));
11506 if (!is_error(ret) && arg3) {
11507 abi_long ret2 = put_user_sal(off, arg3);
11508 if (is_error(ret2)) {
11509 ret = ret2;
11510 }
11511 }
72eb7ea8 11512 return ret;
a8fd1aba 11513 }
4f7f8924 11514#endif
a8fd1aba
PM
11515#ifdef TARGET_NR_sendfile64
11516 case TARGET_NR_sendfile64:
11517 {
11518 off_t *offp = NULL;
11519 off_t off;
11520 if (arg3) {
11521 ret = get_user_s64(off, arg3);
11522 if (is_error(ret)) {
72eb7ea8 11523 return ret;
a8fd1aba
PM
11524 }
11525 offp = &off;
11526 }
11527 ret = get_errno(sendfile(arg1, arg2, offp, arg4));
11528 if (!is_error(ret) && arg3) {
11529 abi_long ret2 = put_user_s64(off, arg3);
11530 if (is_error(ret2)) {
11531 ret = ret2;
11532 }
11533 }
72eb7ea8 11534 return ret;
a8fd1aba
PM
11535 }
11536#endif
ebc05488 11537#endif
048f6b4d 11538#ifdef TARGET_NR_vfork
31e31b8a 11539 case TARGET_NR_vfork:
72eb7ea8
RH
11540 return get_errno(do_fork(cpu_env,
11541 CLONE_VFORK | CLONE_VM | TARGET_SIGCHLD,
11542 0, 0, 0, 0));
048f6b4d 11543#endif
ebc05488 11544#ifdef TARGET_NR_ugetrlimit
31e31b8a 11545 case TARGET_NR_ugetrlimit:
728584be
FB
11546 {
11547 struct rlimit rlim;
e22b7015
WT
11548 int resource = target_to_host_resource(arg1);
11549 ret = get_errno(getrlimit(resource, &rlim));
728584be 11550 if (!is_error(ret)) {
53a5960a 11551 struct target_rlimit *target_rlim;
579a97f7 11552 if (!lock_user_struct(VERIFY_WRITE, target_rlim, arg2, 0))
2852aafd 11553 return -TARGET_EFAULT;
81bbe906
TY
11554 target_rlim->rlim_cur = host_to_target_rlim(rlim.rlim_cur);
11555 target_rlim->rlim_max = host_to_target_rlim(rlim.rlim_max);
53a5960a 11556 unlock_user_struct(target_rlim, arg2, 1);
728584be 11557 }
72eb7ea8 11558 return ret;
728584be 11559 }
ebc05488 11560#endif
a315a145 11561#ifdef TARGET_NR_truncate64
31e31b8a 11562 case TARGET_NR_truncate64:
579a97f7 11563 if (!(p = lock_user_string(arg1)))
2852aafd 11564 return -TARGET_EFAULT;
53a5960a
PB
11565 ret = target_truncate64(cpu_env, p, arg2, arg3, arg4);
11566 unlock_user(p, arg1, 0);
72eb7ea8 11567 return ret;
a315a145
FB
11568#endif
11569#ifdef TARGET_NR_ftruncate64
31e31b8a 11570 case TARGET_NR_ftruncate64:
72eb7ea8 11571 return target_ftruncate64(cpu_env, arg1, arg2, arg3, arg4);
a315a145
FB
11572#endif
11573#ifdef TARGET_NR_stat64
31e31b8a 11574 case TARGET_NR_stat64:
2852aafd
RH
11575 if (!(p = lock_user_string(arg1))) {
11576 return -TARGET_EFAULT;
11577 }
53a5960a
PB
11578 ret = get_errno(stat(path(p), &st));
11579 unlock_user(p, arg1, 0);
6a24a778
AZ
11580 if (!is_error(ret))
11581 ret = host_to_target_stat64(cpu_env, arg2, &st);
72eb7ea8 11582 return ret;
a315a145
FB
11583#endif
11584#ifdef TARGET_NR_lstat64
31e31b8a 11585 case TARGET_NR_lstat64:
2852aafd
RH
11586 if (!(p = lock_user_string(arg1))) {
11587 return -TARGET_EFAULT;
11588 }
53a5960a
PB
11589 ret = get_errno(lstat(path(p), &st));
11590 unlock_user(p, arg1, 0);
6a24a778
AZ
11591 if (!is_error(ret))
11592 ret = host_to_target_stat64(cpu_env, arg2, &st);
72eb7ea8 11593 return ret;
a315a145
FB
11594#endif
11595#ifdef TARGET_NR_fstat64
31e31b8a 11596 case TARGET_NR_fstat64:
6a24a778
AZ
11597 ret = get_errno(fstat(arg1, &st));
11598 if (!is_error(ret))
11599 ret = host_to_target_stat64(cpu_env, arg2, &st);
72eb7ea8 11600 return ret;
ce4defa0 11601#endif
c0d472b1 11602#if (defined(TARGET_NR_fstatat64) || defined(TARGET_NR_newfstatat))
9d33b76b 11603#ifdef TARGET_NR_fstatat64
6a24a778 11604 case TARGET_NR_fstatat64:
9d33b76b
AJ
11605#endif
11606#ifdef TARGET_NR_newfstatat
11607 case TARGET_NR_newfstatat:
11608#endif
2852aafd
RH
11609 if (!(p = lock_user_string(arg2))) {
11610 return -TARGET_EFAULT;
11611 }
c0d472b1 11612 ret = get_errno(fstatat(arg1, path(p), &st, arg4));
2852aafd 11613 unlock_user(p, arg2, 0);
6a24a778
AZ
11614 if (!is_error(ret))
11615 ret = host_to_target_stat64(cpu_env, arg3, &st);
72eb7ea8 11616 return ret;
a315a145 11617#endif
efa92184
AR
11618#if defined(TARGET_NR_statx)
11619 case TARGET_NR_statx:
11620 {
11621 struct target_statx *target_stx;
11622 int dirfd = arg1;
11623 int flags = arg3;
11624
11625 p = lock_user_string(arg2);
11626 if (p == NULL) {
11627 return -TARGET_EFAULT;
11628 }
11629#if defined(__NR_statx)
11630 {
11631 /*
11632 * It is assumed that struct statx is architecture independent.
11633 */
11634 struct target_statx host_stx;
11635 int mask = arg4;
11636
11637 ret = get_errno(sys_statx(dirfd, p, flags, mask, &host_stx));
11638 if (!is_error(ret)) {
11639 if (host_to_target_statx(&host_stx, arg5) != 0) {
11640 unlock_user(p, arg2, 0);
11641 return -TARGET_EFAULT;
11642 }
11643 }
11644
11645 if (ret != -TARGET_ENOSYS) {
11646 unlock_user(p, arg2, 0);
11647 return ret;
11648 }
11649 }
11650#endif
11651 ret = get_errno(fstatat(dirfd, path(p), &st, flags));
11652 unlock_user(p, arg2, 0);
11653
11654 if (!is_error(ret)) {
11655 if (!lock_user_struct(VERIFY_WRITE, target_stx, arg5, 0)) {
11656 return -TARGET_EFAULT;
11657 }
11658 memset(target_stx, 0, sizeof(*target_stx));
11659 __put_user(major(st.st_dev), &target_stx->stx_dev_major);
11660 __put_user(minor(st.st_dev), &target_stx->stx_dev_minor);
11661 __put_user(st.st_ino, &target_stx->stx_ino);
11662 __put_user(st.st_mode, &target_stx->stx_mode);
11663 __put_user(st.st_uid, &target_stx->stx_uid);
11664 __put_user(st.st_gid, &target_stx->stx_gid);
11665 __put_user(st.st_nlink, &target_stx->stx_nlink);
11666 __put_user(major(st.st_rdev), &target_stx->stx_rdev_major);
11667 __put_user(minor(st.st_rdev), &target_stx->stx_rdev_minor);
11668 __put_user(st.st_size, &target_stx->stx_size);
11669 __put_user(st.st_blksize, &target_stx->stx_blksize);
11670 __put_user(st.st_blocks, &target_stx->stx_blocks);
11671 __put_user(st.st_atime, &target_stx->stx_atime.tv_sec);
11672 __put_user(st.st_mtime, &target_stx->stx_mtime.tv_sec);
11673 __put_user(st.st_ctime, &target_stx->stx_ctime.tv_sec);
11674 unlock_user_struct(target_stx, arg5, 1);
11675 }
11676 }
11677 return ret;
11678#endif
704eff6c 11679#ifdef TARGET_NR_lchown
67867308 11680 case TARGET_NR_lchown:
579a97f7 11681 if (!(p = lock_user_string(arg1)))
2852aafd 11682 return -TARGET_EFAULT;
53a5960a
PB
11683 ret = get_errno(lchown(p, low2highuid(arg2), low2highgid(arg3)));
11684 unlock_user(p, arg1, 0);
72eb7ea8 11685 return ret;
704eff6c 11686#endif
0c866a7e 11687#ifdef TARGET_NR_getuid
67867308 11688 case TARGET_NR_getuid:
72eb7ea8 11689 return get_errno(high2lowuid(getuid()));
0c866a7e
RV
11690#endif
11691#ifdef TARGET_NR_getgid
67867308 11692 case TARGET_NR_getgid:
72eb7ea8 11693 return get_errno(high2lowgid(getgid()));
0c866a7e
RV
11694#endif
11695#ifdef TARGET_NR_geteuid
67867308 11696 case TARGET_NR_geteuid:
72eb7ea8 11697 return get_errno(high2lowuid(geteuid()));
0c866a7e
RV
11698#endif
11699#ifdef TARGET_NR_getegid
67867308 11700 case TARGET_NR_getegid:
72eb7ea8 11701 return get_errno(high2lowgid(getegid()));
0c866a7e 11702#endif
67867308 11703 case TARGET_NR_setreuid:
72eb7ea8 11704 return get_errno(setreuid(low2highuid(arg1), low2highuid(arg2)));
67867308 11705 case TARGET_NR_setregid:
72eb7ea8 11706 return get_errno(setregid(low2highgid(arg1), low2highgid(arg2)));
67867308 11707 case TARGET_NR_getgroups:
725160fe 11708 { /* the same code as for TARGET_NR_getgroups32 */
67867308 11709 int gidsetsize = arg1;
0c866a7e 11710 target_id *target_grouplist;
1e35d327 11711 g_autofree gid_t *grouplist = NULL;
67867308
FB
11712 int i;
11713
8fbf89a9 11714 if (gidsetsize > NGROUPS_MAX || gidsetsize < 0) {
1e35d327
MT
11715 return -TARGET_EINVAL;
11716 }
11717 if (gidsetsize > 0) {
11718 grouplist = g_try_new(gid_t, gidsetsize);
11719 if (!grouplist) {
11720 return -TARGET_ENOMEM;
11721 }
11722 }
67867308 11723 ret = get_errno(getgroups(gidsetsize, grouplist));
1e35d327
MT
11724 if (!is_error(ret) && gidsetsize > 0) {
11725 target_grouplist = lock_user(VERIFY_WRITE, arg2,
11726 gidsetsize * sizeof(target_id), 0);
11727 if (!target_grouplist) {
2852aafd 11728 return -TARGET_EFAULT;
1e35d327
MT
11729 }
11730 for (i = 0; i < ret; i++) {
0c866a7e 11731 target_grouplist[i] = tswapid(high2lowgid(grouplist[i]));
1e35d327
MT
11732 }
11733 unlock_user(target_grouplist, arg2,
11734 gidsetsize * sizeof(target_id));
67867308 11735 }
1e35d327 11736 return ret;
67867308 11737 }
67867308 11738 case TARGET_NR_setgroups:
725160fe 11739 { /* the same code as for TARGET_NR_setgroups32 */
67867308 11740 int gidsetsize = arg1;
0c866a7e 11741 target_id *target_grouplist;
1e35d327 11742 g_autofree gid_t *grouplist = NULL;
67867308 11743 int i;
1e35d327
MT
11744
11745 if (gidsetsize > NGROUPS_MAX || gidsetsize < 0) {
11746 return -TARGET_EINVAL;
11747 }
11748 if (gidsetsize > 0) {
11749 grouplist = g_try_new(gid_t, gidsetsize);
11750 if (!grouplist) {
11751 return -TARGET_ENOMEM;
11752 }
11753 target_grouplist = lock_user(VERIFY_READ, arg2,
11754 gidsetsize * sizeof(target_id), 1);
f2b79ce9 11755 if (!target_grouplist) {
259841c1 11756 return -TARGET_EFAULT;
f2b79ce9
DA
11757 }
11758 for (i = 0; i < gidsetsize; i++) {
11759 grouplist[i] = low2highgid(tswapid(target_grouplist[i]));
11760 }
1e35d327
MT
11761 unlock_user(target_grouplist, arg2,
11762 gidsetsize * sizeof(target_id));
579a97f7 11763 }
72eb7ea8 11764 return get_errno(setgroups(gidsetsize, grouplist));
67867308 11765 }
67867308 11766 case TARGET_NR_fchown:
72eb7ea8 11767 return get_errno(fchown(arg1, low2highuid(arg2), low2highgid(arg3)));
c0d472b1 11768#if defined(TARGET_NR_fchownat)
ccfa72b7 11769 case TARGET_NR_fchownat:
579a97f7 11770 if (!(p = lock_user_string(arg2)))
2852aafd 11771 return -TARGET_EFAULT;
c0d472b1
PM
11772 ret = get_errno(fchownat(arg1, p, low2highuid(arg3),
11773 low2highgid(arg4), arg5));
579a97f7 11774 unlock_user(p, arg2, 0);
72eb7ea8 11775 return ret;
ccfa72b7 11776#endif
67867308
FB
11777#ifdef TARGET_NR_setresuid
11778 case TARGET_NR_setresuid:
72eb7ea8
RH
11779 return get_errno(sys_setresuid(low2highuid(arg1),
11780 low2highuid(arg2),
11781 low2highuid(arg3)));
67867308
FB
11782#endif
11783#ifdef TARGET_NR_getresuid
11784 case TARGET_NR_getresuid:
11785 {
53a5960a 11786 uid_t ruid, euid, suid;
67867308
FB
11787 ret = get_errno(getresuid(&ruid, &euid, &suid));
11788 if (!is_error(ret)) {
76ca310a
PM
11789 if (put_user_id(high2lowuid(ruid), arg1)
11790 || put_user_id(high2lowuid(euid), arg2)
11791 || put_user_id(high2lowuid(suid), arg3))
2852aafd 11792 return -TARGET_EFAULT;
67867308
FB
11793 }
11794 }
72eb7ea8 11795 return ret;
67867308
FB
11796#endif
11797#ifdef TARGET_NR_getresgid
11798 case TARGET_NR_setresgid:
72eb7ea8
RH
11799 return get_errno(sys_setresgid(low2highgid(arg1),
11800 low2highgid(arg2),
11801 low2highgid(arg3)));
67867308
FB
11802#endif
11803#ifdef TARGET_NR_getresgid
11804 case TARGET_NR_getresgid:
11805 {
53a5960a 11806 gid_t rgid, egid, sgid;
67867308
FB
11807 ret = get_errno(getresgid(&rgid, &egid, &sgid));
11808 if (!is_error(ret)) {
76ca310a
PM
11809 if (put_user_id(high2lowgid(rgid), arg1)
11810 || put_user_id(high2lowgid(egid), arg2)
11811 || put_user_id(high2lowgid(sgid), arg3))
2852aafd 11812 return -TARGET_EFAULT;
67867308
FB
11813 }
11814 }
72eb7ea8 11815 return ret;
67867308 11816#endif
704eff6c 11817#ifdef TARGET_NR_chown
67867308 11818 case TARGET_NR_chown:
579a97f7 11819 if (!(p = lock_user_string(arg1)))
2852aafd 11820 return -TARGET_EFAULT;
53a5960a
PB
11821 ret = get_errno(chown(p, low2highuid(arg2), low2highgid(arg3)));
11822 unlock_user(p, arg1, 0);
72eb7ea8 11823 return ret;
704eff6c 11824#endif
67867308 11825 case TARGET_NR_setuid:
72eb7ea8 11826 return get_errno(sys_setuid(low2highuid(arg1)));
67867308 11827 case TARGET_NR_setgid:
72eb7ea8 11828 return get_errno(sys_setgid(low2highgid(arg1)));
67867308 11829 case TARGET_NR_setfsuid:
72eb7ea8 11830 return get_errno(setfsuid(arg1));
67867308 11831 case TARGET_NR_setfsgid:
72eb7ea8 11832 return get_errno(setfsgid(arg1));
67867308 11833
a315a145 11834#ifdef TARGET_NR_lchown32
31e31b8a 11835 case TARGET_NR_lchown32:
579a97f7 11836 if (!(p = lock_user_string(arg1)))
2852aafd 11837 return -TARGET_EFAULT;
53a5960a
PB
11838 ret = get_errno(lchown(p, arg2, arg3));
11839 unlock_user(p, arg1, 0);
72eb7ea8 11840 return ret;
a315a145
FB
11841#endif
11842#ifdef TARGET_NR_getuid32
31e31b8a 11843 case TARGET_NR_getuid32:
72eb7ea8 11844 return get_errno(getuid());
a315a145 11845#endif
64b4d28c
AJ
11846
11847#if defined(TARGET_NR_getxuid) && defined(TARGET_ALPHA)
11848 /* Alpha specific */
11849 case TARGET_NR_getxuid:
ba0e276d
RH
11850 {
11851 uid_t euid;
11852 euid=geteuid();
0effdc29 11853 cpu_env->ir[IR_A4]=euid;
ba0e276d 11854 }
72eb7ea8 11855 return get_errno(getuid());
64b4d28c
AJ
11856#endif
11857#if defined(TARGET_NR_getxgid) && defined(TARGET_ALPHA)
11858 /* Alpha specific */
11859 case TARGET_NR_getxgid:
ba0e276d
RH
11860 {
11861 uid_t egid;
11862 egid=getegid();
0effdc29 11863 cpu_env->ir[IR_A4]=egid;
ba0e276d 11864 }
72eb7ea8 11865 return get_errno(getgid());
64b4d28c 11866#endif
ba0e276d
RH
11867#if defined(TARGET_NR_osf_getsysinfo) && defined(TARGET_ALPHA)
11868 /* Alpha specific */
11869 case TARGET_NR_osf_getsysinfo:
11870 ret = -TARGET_EOPNOTSUPP;
11871 switch (arg1) {
11872 case TARGET_GSI_IEEE_FP_CONTROL:
11873 {
21ba8564 11874 uint64_t fpcr = cpu_alpha_load_fpcr(cpu_env);
0effdc29 11875 uint64_t swcr = cpu_env->swcr;
21ba8564
RH
11876
11877 swcr &= ~SWCR_STATUS_MASK;
11878 swcr |= (fpcr >> 35) & SWCR_STATUS_MASK;
ba0e276d
RH
11879
11880 if (put_user_u64 (swcr, arg2))
2852aafd 11881 return -TARGET_EFAULT;
ba0e276d
RH
11882 ret = 0;
11883 }
11884 break;
11885
11886 /* case GSI_IEEE_STATE_AT_SIGNAL:
11887 -- Not implemented in linux kernel.
11888 case GSI_UACPROC:
11889 -- Retrieves current unaligned access state; not much used.
11890 case GSI_PROC_TYPE:
11891 -- Retrieves implver information; surely not used.
11892 case GSI_GET_HWRPB:
11893 -- Grabs a copy of the HWRPB; surely not used.
11894 */
11895 }
72eb7ea8 11896 return ret;
ba0e276d
RH
11897#endif
11898#if defined(TARGET_NR_osf_setsysinfo) && defined(TARGET_ALPHA)
11899 /* Alpha specific */
11900 case TARGET_NR_osf_setsysinfo:
11901 ret = -TARGET_EOPNOTSUPP;
11902 switch (arg1) {
11903 case TARGET_SSI_IEEE_FP_CONTROL:
ba0e276d 11904 {
21ba8564 11905 uint64_t swcr, fpcr;
ba0e276d 11906
6e06d515 11907 if (get_user_u64 (swcr, arg2)) {
2852aafd 11908 return -TARGET_EFAULT;
6e06d515 11909 }
ba0e276d 11910
21ba8564
RH
11911 /*
11912 * The kernel calls swcr_update_status to update the
11913 * status bits from the fpcr at every point that it
11914 * could be queried. Therefore, we store the status
11915 * bits only in FPCR.
11916 */
0effdc29 11917 cpu_env->swcr = swcr & (SWCR_TRAP_ENABLE_MASK | SWCR_MAP_MASK);
21ba8564
RH
11918
11919 fpcr = cpu_alpha_load_fpcr(cpu_env);
11920 fpcr &= ((uint64_t)FPCR_DYN_MASK << 32);
11921 fpcr |= alpha_ieee_swcr_to_fpcr(swcr);
6e06d515 11922 cpu_alpha_store_fpcr(cpu_env, fpcr);
ba0e276d 11923 ret = 0;
6e06d515
RH
11924 }
11925 break;
11926
11927 case TARGET_SSI_IEEE_RAISE_EXCEPTION:
11928 {
21ba8564 11929 uint64_t exc, fpcr, fex;
6e06d515
RH
11930
11931 if (get_user_u64(exc, arg2)) {
2852aafd 11932 return -TARGET_EFAULT;
6e06d515 11933 }
21ba8564
RH
11934 exc &= SWCR_STATUS_MASK;
11935 fpcr = cpu_alpha_load_fpcr(cpu_env);
ba0e276d 11936
21ba8564
RH
11937 /* Old exceptions are not signaled. */
11938 fex = alpha_ieee_fpcr_to_swcr(fpcr);
11939 fex = exc & ~fex;
11940 fex >>= SWCR_STATUS_TO_EXCSUM_SHIFT;
0effdc29 11941 fex &= (cpu_env)->swcr;
6e06d515 11942
21ba8564
RH
11943 /* Update the hardware fpcr. */
11944 fpcr |= alpha_ieee_swcr_to_fpcr(exc);
6e06d515 11945 cpu_alpha_store_fpcr(cpu_env, fpcr);
6e06d515 11946
21ba8564
RH
11947 if (fex) {
11948 int si_code = TARGET_FPE_FLTUNK;
6e06d515 11949 target_siginfo_t info;
21ba8564
RH
11950
11951 if (fex & SWCR_TRAP_ENABLE_DNO) {
11952 si_code = TARGET_FPE_FLTUND;
11953 }
11954 if (fex & SWCR_TRAP_ENABLE_INE) {
11955 si_code = TARGET_FPE_FLTRES;
11956 }
11957 if (fex & SWCR_TRAP_ENABLE_UNF) {
11958 si_code = TARGET_FPE_FLTUND;
11959 }
11960 if (fex & SWCR_TRAP_ENABLE_OVF) {
11961 si_code = TARGET_FPE_FLTOVF;
11962 }
11963 if (fex & SWCR_TRAP_ENABLE_DZE) {
11964 si_code = TARGET_FPE_FLTDIV;
11965 }
11966 if (fex & SWCR_TRAP_ENABLE_INV) {
11967 si_code = TARGET_FPE_FLTINV;
11968 }
11969
6e06d515
RH
11970 info.si_signo = SIGFPE;
11971 info.si_errno = 0;
11972 info.si_code = si_code;
0effdc29
PMD
11973 info._sifields._sigfault._addr = (cpu_env)->pc;
11974 queue_signal(cpu_env, info.si_signo,
9d2803f7 11975 QEMU_SI_FAULT, &info);
ba0e276d 11976 }
21ba8564 11977 ret = 0;
ba0e276d
RH
11978 }
11979 break;
11980
11981 /* case SSI_NVPAIRS:
11982 -- Used with SSIN_UACPROC to enable unaligned accesses.
11983 case SSI_IEEE_STATE_AT_SIGNAL:
11984 case SSI_IEEE_IGNORE_STATE_AT_SIGNAL:
11985 -- Not implemented in linux kernel
11986 */
11987 }
72eb7ea8 11988 return ret;
ba0e276d
RH
11989#endif
11990#ifdef TARGET_NR_osf_sigprocmask
11991 /* Alpha specific. */
11992 case TARGET_NR_osf_sigprocmask:
11993 {
11994 abi_ulong mask;
bc088ba1 11995 int how;
ba0e276d
RH
11996 sigset_t set, oldset;
11997
11998 switch(arg1) {
11999 case TARGET_SIG_BLOCK:
12000 how = SIG_BLOCK;
12001 break;
12002 case TARGET_SIG_UNBLOCK:
12003 how = SIG_UNBLOCK;
12004 break;
12005 case TARGET_SIG_SETMASK:
12006 how = SIG_SETMASK;
12007 break;
12008 default:
259841c1 12009 return -TARGET_EINVAL;
ba0e276d
RH
12010 }
12011 mask = arg2;
12012 target_to_host_old_sigset(&set, &mask);
3d3efba0
PM
12013 ret = do_sigprocmask(how, &set, &oldset);
12014 if (!ret) {
12015 host_to_target_old_sigset(&mask, &oldset);
12016 ret = mask;
12017 }
ba0e276d 12018 }
72eb7ea8 12019 return ret;
ba0e276d 12020#endif
64b4d28c 12021
a315a145 12022#ifdef TARGET_NR_getgid32
31e31b8a 12023 case TARGET_NR_getgid32:
72eb7ea8 12024 return get_errno(getgid());
a315a145
FB
12025#endif
12026#ifdef TARGET_NR_geteuid32
31e31b8a 12027 case TARGET_NR_geteuid32:
72eb7ea8 12028 return get_errno(geteuid());
a315a145
FB
12029#endif
12030#ifdef TARGET_NR_getegid32
31e31b8a 12031 case TARGET_NR_getegid32:
72eb7ea8 12032 return get_errno(getegid());
a315a145
FB
12033#endif
12034#ifdef TARGET_NR_setreuid32
31e31b8a 12035 case TARGET_NR_setreuid32:
72eb7ea8 12036 return get_errno(setreuid(arg1, arg2));
a315a145
FB
12037#endif
12038#ifdef TARGET_NR_setregid32
31e31b8a 12039 case TARGET_NR_setregid32:
72eb7ea8 12040 return get_errno(setregid(arg1, arg2));
a315a145
FB
12041#endif
12042#ifdef TARGET_NR_getgroups32
31e31b8a 12043 case TARGET_NR_getgroups32:
725160fe 12044 { /* the same code as for TARGET_NR_getgroups */
99c475ab 12045 int gidsetsize = arg1;
53a5960a 12046 uint32_t *target_grouplist;
1e35d327 12047 g_autofree gid_t *grouplist = NULL;
99c475ab
FB
12048 int i;
12049
8fbf89a9 12050 if (gidsetsize > NGROUPS_MAX || gidsetsize < 0) {
1e35d327
MT
12051 return -TARGET_EINVAL;
12052 }
12053 if (gidsetsize > 0) {
12054 grouplist = g_try_new(gid_t, gidsetsize);
12055 if (!grouplist) {
12056 return -TARGET_ENOMEM;
12057 }
12058 }
99c475ab 12059 ret = get_errno(getgroups(gidsetsize, grouplist));
1e35d327
MT
12060 if (!is_error(ret) && gidsetsize > 0) {
12061 target_grouplist = lock_user(VERIFY_WRITE, arg2,
12062 gidsetsize * 4, 0);
579a97f7 12063 if (!target_grouplist) {
259841c1 12064 return -TARGET_EFAULT;
579a97f7 12065 }
1e35d327 12066 for (i = 0; i < ret; i++) {
53a5960a 12067 target_grouplist[i] = tswap32(grouplist[i]);
1e35d327 12068 }
53a5960a 12069 unlock_user(target_grouplist, arg2, gidsetsize * 4);
99c475ab 12070 }
1e35d327 12071 return ret;
99c475ab 12072 }
a315a145
FB
12073#endif
12074#ifdef TARGET_NR_setgroups32
31e31b8a 12075 case TARGET_NR_setgroups32:
725160fe 12076 { /* the same code as for TARGET_NR_setgroups */
99c475ab 12077 int gidsetsize = arg1;
53a5960a 12078 uint32_t *target_grouplist;
1e35d327 12079 g_autofree gid_t *grouplist = NULL;
99c475ab 12080 int i;
3b46e624 12081
1e35d327
MT
12082 if (gidsetsize > NGROUPS_MAX || gidsetsize < 0) {
12083 return -TARGET_EINVAL;
12084 }
12085 if (gidsetsize > 0) {
12086 grouplist = g_try_new(gid_t, gidsetsize);
12087 if (!grouplist) {
12088 return -TARGET_ENOMEM;
12089 }
12090 target_grouplist = lock_user(VERIFY_READ, arg2,
12091 gidsetsize * 4, 1);
12092 if (!target_grouplist) {
12093 return -TARGET_EFAULT;
12094 }
12095 for (i = 0; i < gidsetsize; i++) {
12096 grouplist[i] = tswap32(target_grouplist[i]);
12097 }
12098 unlock_user(target_grouplist, arg2, 0);
579a97f7 12099 }
72eb7ea8 12100 return get_errno(setgroups(gidsetsize, grouplist));
99c475ab 12101 }
a315a145
FB
12102#endif
12103#ifdef TARGET_NR_fchown32
31e31b8a 12104 case TARGET_NR_fchown32:
72eb7ea8 12105 return get_errno(fchown(arg1, arg2, arg3));
a315a145
FB
12106#endif
12107#ifdef TARGET_NR_setresuid32
31e31b8a 12108 case TARGET_NR_setresuid32:
72eb7ea8 12109 return get_errno(sys_setresuid(arg1, arg2, arg3));
a315a145
FB
12110#endif
12111#ifdef TARGET_NR_getresuid32
31e31b8a 12112 case TARGET_NR_getresuid32:
b03c60f3 12113 {
53a5960a 12114 uid_t ruid, euid, suid;
b03c60f3
FB
12115 ret = get_errno(getresuid(&ruid, &euid, &suid));
12116 if (!is_error(ret)) {
2f619698
FB
12117 if (put_user_u32(ruid, arg1)
12118 || put_user_u32(euid, arg2)
12119 || put_user_u32(suid, arg3))
2852aafd 12120 return -TARGET_EFAULT;
b03c60f3
FB
12121 }
12122 }
72eb7ea8 12123 return ret;
a315a145
FB
12124#endif
12125#ifdef TARGET_NR_setresgid32
31e31b8a 12126 case TARGET_NR_setresgid32:
72eb7ea8 12127 return get_errno(sys_setresgid(arg1, arg2, arg3));
a315a145
FB
12128#endif
12129#ifdef TARGET_NR_getresgid32
31e31b8a 12130 case TARGET_NR_getresgid32:
b03c60f3 12131 {
53a5960a 12132 gid_t rgid, egid, sgid;
b03c60f3
FB
12133 ret = get_errno(getresgid(&rgid, &egid, &sgid));
12134 if (!is_error(ret)) {
2f619698
FB
12135 if (put_user_u32(rgid, arg1)
12136 || put_user_u32(egid, arg2)
12137 || put_user_u32(sgid, arg3))
2852aafd 12138 return -TARGET_EFAULT;
b03c60f3
FB
12139 }
12140 }
72eb7ea8 12141 return ret;
a315a145
FB
12142#endif
12143#ifdef TARGET_NR_chown32
31e31b8a 12144 case TARGET_NR_chown32:
579a97f7 12145 if (!(p = lock_user_string(arg1)))
2852aafd 12146 return -TARGET_EFAULT;
53a5960a
PB
12147 ret = get_errno(chown(p, arg2, arg3));
12148 unlock_user(p, arg1, 0);
72eb7ea8 12149 return ret;
a315a145
FB
12150#endif
12151#ifdef TARGET_NR_setuid32
31e31b8a 12152 case TARGET_NR_setuid32:
72eb7ea8 12153 return get_errno(sys_setuid(arg1));
a315a145
FB
12154#endif
12155#ifdef TARGET_NR_setgid32
31e31b8a 12156 case TARGET_NR_setgid32:
72eb7ea8 12157 return get_errno(sys_setgid(arg1));
a315a145
FB
12158#endif
12159#ifdef TARGET_NR_setfsuid32
31e31b8a 12160 case TARGET_NR_setfsuid32:
72eb7ea8 12161 return get_errno(setfsuid(arg1));
a315a145
FB
12162#endif
12163#ifdef TARGET_NR_setfsgid32
31e31b8a 12164 case TARGET_NR_setfsgid32:
72eb7ea8 12165 return get_errno(setfsgid(arg1));
a315a145 12166#endif
ffa65c3b 12167#ifdef TARGET_NR_mincore
31e31b8a 12168 case TARGET_NR_mincore:
04bb9ace 12169 {
f443a26c 12170 void *a = lock_user(VERIFY_NONE, arg1, arg2, 0);
98a3331a 12171 if (!a) {
259841c1 12172 return -TARGET_ENOMEM;
98a3331a 12173 }
98a3331a
FSM
12174 p = lock_user_string(arg3);
12175 if (!p) {
259841c1
RH
12176 ret = -TARGET_EFAULT;
12177 } else {
12178 ret = get_errno(mincore(a, arg2, p));
12179 unlock_user(p, arg3, ret);
98a3331a 12180 }
04bb9ace
AJ
12181 unlock_user(a, arg1, 0);
12182 }
72eb7ea8 12183 return ret;
ffa65c3b 12184#endif
408321b6
AJ
12185#ifdef TARGET_NR_arm_fadvise64_64
12186 case TARGET_NR_arm_fadvise64_64:
e0156a9d
PM
12187 /* arm_fadvise64_64 looks like fadvise64_64 but
12188 * with different argument order: fd, advice, offset, len
12189 * rather than the usual fd, offset, len, advice.
12190 * Note that offset and len are both 64-bit so appear as
12191 * pairs of 32-bit registers.
12192 */
12193 ret = posix_fadvise(arg1, target_offset64(arg3, arg4),
12194 target_offset64(arg5, arg6), arg2);
72eb7ea8 12195 return -host_to_target_errno(ret);
408321b6 12196#endif
badd3cd8 12197
eeed2291 12198#if TARGET_ABI_BITS == 32 && !defined(TARGET_ABI_MIPSN32)
badd3cd8
PM
12199
12200#ifdef TARGET_NR_fadvise64_64
12201 case TARGET_NR_fadvise64_64:
64a563dd 12202#if defined(TARGET_PPC) || defined(TARGET_XTENSA)
43046b5a
LV
12203 /* 6 args: fd, advice, offset (high, low), len (high, low) */
12204 ret = arg2;
12205 arg2 = arg3;
12206 arg3 = arg4;
12207 arg4 = arg5;
12208 arg5 = arg6;
12209 arg6 = ret;
12210#else
badd3cd8 12211 /* 6 args: fd, offset (high, low), len (high, low), advice */
8bf8e9df 12212 if (regpairs_aligned(cpu_env, num)) {
badd3cd8
PM
12213 /* offset is in (3,4), len in (5,6) and advice in 7 */
12214 arg2 = arg3;
12215 arg3 = arg4;
12216 arg4 = arg5;
12217 arg5 = arg6;
12218 arg6 = arg7;
12219 }
43046b5a 12220#endif
72eb7ea8
RH
12221 ret = posix_fadvise(arg1, target_offset64(arg2, arg3),
12222 target_offset64(arg4, arg5), arg6);
12223 return -host_to_target_errno(ret);
badd3cd8
PM
12224#endif
12225
12226#ifdef TARGET_NR_fadvise64
12227 case TARGET_NR_fadvise64:
12228 /* 5 args: fd, offset (high, low), len, advice */
8bf8e9df 12229 if (regpairs_aligned(cpu_env, num)) {
badd3cd8
PM
12230 /* offset is in (3,4), len in 5 and advice in 6 */
12231 arg2 = arg3;
12232 arg3 = arg4;
12233 arg4 = arg5;
12234 arg5 = arg6;
12235 }
72eb7ea8
RH
12236 ret = posix_fadvise(arg1, target_offset64(arg2, arg3), arg4, arg5);
12237 return -host_to_target_errno(ret);
408321b6 12238#endif
badd3cd8
PM
12239
12240#else /* not a 32-bit ABI */
e0156a9d 12241#if defined(TARGET_NR_fadvise64_64) || defined(TARGET_NR_fadvise64)
408321b6
AJ
12242#ifdef TARGET_NR_fadvise64_64
12243 case TARGET_NR_fadvise64_64:
12244#endif
e72d2cc7
UH
12245#ifdef TARGET_NR_fadvise64
12246 case TARGET_NR_fadvise64:
12247#endif
12248#ifdef TARGET_S390X
12249 switch (arg4) {
12250 case 4: arg4 = POSIX_FADV_NOREUSE + 1; break; /* make sure it's an invalid value */
12251 case 5: arg4 = POSIX_FADV_NOREUSE + 2; break; /* ditto */
12252 case 6: arg4 = POSIX_FADV_DONTNEED; break;
12253 case 7: arg4 = POSIX_FADV_NOREUSE; break;
12254 default: break;
12255 }
12256#endif
72eb7ea8 12257 return -host_to_target_errno(posix_fadvise(arg1, arg2, arg3, arg4));
408321b6 12258#endif
badd3cd8
PM
12259#endif /* end of 64-bit ABI fadvise handling */
12260
ffa65c3b 12261#ifdef TARGET_NR_madvise
31e31b8a 12262 case TARGET_NR_madvise:
892a4f6a 12263 return target_madvise(arg1, arg2, arg3);
ffa65c3b 12264#endif
bbf5f2a1 12265#ifdef TARGET_NR_fcntl64
31e31b8a 12266 case TARGET_NR_fcntl64:
77e4672d 12267 {
bbf5f2a1
AB
12268 int cmd;
12269 struct flock64 fl;
213d3e9e
PM
12270 from_flock64_fn *copyfrom = copy_from_user_flock64;
12271 to_flock64_fn *copyto = copy_to_user_flock64;
12272
ce4defa0 12273#ifdef TARGET_ARM
0effdc29 12274 if (!cpu_env->eabi) {
7f254c5c
LV
12275 copyfrom = copy_from_user_oabi_flock64;
12276 copyto = copy_to_user_oabi_flock64;
213d3e9e 12277 }
ce4defa0 12278#endif
77e4672d 12279
bbf5f2a1 12280 cmd = target_to_host_fcntl_cmd(arg2);
31b63193 12281 if (cmd == -TARGET_EINVAL) {
72eb7ea8 12282 return cmd;
31b63193 12283 }
b1e341eb 12284
60cd49d5 12285 switch(arg2) {
b1e341eb 12286 case TARGET_F_GETLK64:
213d3e9e
PM
12287 ret = copyfrom(&fl, arg3);
12288 if (ret) {
12289 break;
5813427b 12290 }
af8ab2bf 12291 ret = get_errno(safe_fcntl(arg1, cmd, &fl));
213d3e9e
PM
12292 if (ret == 0) {
12293 ret = copyto(arg3, &fl);
12294 }
77e4672d
FB
12295 break;
12296
b1e341eb
TS
12297 case TARGET_F_SETLK64:
12298 case TARGET_F_SETLKW64:
213d3e9e
PM
12299 ret = copyfrom(&fl, arg3);
12300 if (ret) {
12301 break;
ce4defa0 12302 }
435da5e7 12303 ret = get_errno(safe_fcntl(arg1, cmd, &fl));
77e4672d 12304 break;
60cd49d5 12305 default:
5f106811 12306 ret = do_fcntl(arg1, arg2, arg3);
60cd49d5
FB
12307 break;
12308 }
72eb7ea8 12309 return ret;
77e4672d 12310 }
60cd49d5 12311#endif
7d600c80
TS
12312#ifdef TARGET_NR_cacheflush
12313 case TARGET_NR_cacheflush:
12314 /* self-modifying code is handled automatically, so nothing needed */
72eb7ea8 12315 return 0;
7d600c80 12316#endif
c573ff67
FB
12317#ifdef TARGET_NR_getpagesize
12318 case TARGET_NR_getpagesize:
72eb7ea8 12319 return TARGET_PAGE_SIZE;
ebc05488 12320#endif
31e31b8a 12321 case TARGET_NR_gettid:
71ba74f6 12322 return get_errno(sys_gettid());
e5febef5 12323#ifdef TARGET_NR_readahead
31e31b8a 12324 case TARGET_NR_readahead:
eeed2291 12325#if TARGET_ABI_BITS == 32 && !defined(TARGET_ABI_MIPSN32)
8bf8e9df 12326 if (regpairs_aligned(cpu_env, num)) {
2054ac9b
AJ
12327 arg2 = arg3;
12328 arg3 = arg4;
12329 arg4 = arg5;
12330 }
77c6850f 12331 ret = get_errno(readahead(arg1, target_offset64(arg2, arg3) , arg4));
2054ac9b
AJ
12332#else
12333 ret = get_errno(readahead(arg1, arg2, arg3));
12334#endif
72eb7ea8 12335 return ret;
e5febef5 12336#endif
a790ae38 12337#ifdef CONFIG_ATTR
ebc05488 12338#ifdef TARGET_NR_setxattr
31e31b8a
FB
12339 case TARGET_NR_listxattr:
12340 case TARGET_NR_llistxattr:
fb5590f7 12341 {
77c9f177 12342 void *b = 0;
fb5590f7
PM
12343 if (arg2) {
12344 b = lock_user(VERIFY_WRITE, arg2, arg3, 0);
12345 if (!b) {
72eb7ea8 12346 return -TARGET_EFAULT;
fb5590f7
PM
12347 }
12348 }
12349 p = lock_user_string(arg1);
12350 if (p) {
12351 if (num == TARGET_NR_listxattr) {
12352 ret = get_errno(listxattr(p, b, arg3));
12353 } else {
12354 ret = get_errno(llistxattr(p, b, arg3));
12355 }
12356 } else {
12357 ret = -TARGET_EFAULT;
12358 }
12359 unlock_user(p, arg1, 0);
12360 unlock_user(b, arg2, arg3);
72eb7ea8 12361 return ret;
fb5590f7 12362 }
31e31b8a 12363 case TARGET_NR_flistxattr:
fb5590f7
PM
12364 {
12365 void *b = 0;
12366 if (arg2) {
12367 b = lock_user(VERIFY_WRITE, arg2, arg3, 0);
12368 if (!b) {
72eb7ea8 12369 return -TARGET_EFAULT;
fb5590f7
PM
12370 }
12371 }
12372 ret = get_errno(flistxattr(arg1, b, arg3));
12373 unlock_user(b, arg2, arg3);
72eb7ea8 12374 return ret;
fb5590f7 12375 }
a790ae38 12376 case TARGET_NR_setxattr:
30297b55 12377 case TARGET_NR_lsetxattr:
a790ae38 12378 {
77c9f177 12379 void *n, *v = 0;
e3c33ec6
PM
12380 if (arg3) {
12381 v = lock_user(VERIFY_READ, arg3, arg4, 1);
12382 if (!v) {
72eb7ea8 12383 return -TARGET_EFAULT;
e3c33ec6
PM
12384 }
12385 }
a790ae38
ACH
12386 p = lock_user_string(arg1);
12387 n = lock_user_string(arg2);
e3c33ec6 12388 if (p && n) {
30297b55
PM
12389 if (num == TARGET_NR_setxattr) {
12390 ret = get_errno(setxattr(p, n, v, arg4, arg5));
12391 } else {
12392 ret = get_errno(lsetxattr(p, n, v, arg4, arg5));
12393 }
a790ae38
ACH
12394 } else {
12395 ret = -TARGET_EFAULT;
12396 }
12397 unlock_user(p, arg1, 0);
12398 unlock_user(n, arg2, 0);
12399 unlock_user(v, arg3, 0);
12400 }
72eb7ea8 12401 return ret;
30297b55
PM
12402 case TARGET_NR_fsetxattr:
12403 {
12404 void *n, *v = 0;
12405 if (arg3) {
12406 v = lock_user(VERIFY_READ, arg3, arg4, 1);
12407 if (!v) {
72eb7ea8 12408 return -TARGET_EFAULT;
30297b55
PM
12409 }
12410 }
12411 n = lock_user_string(arg2);
12412 if (n) {
12413 ret = get_errno(fsetxattr(arg1, n, v, arg4, arg5));
12414 } else {
12415 ret = -TARGET_EFAULT;
12416 }
12417 unlock_user(n, arg2, 0);
12418 unlock_user(v, arg3, 0);
12419 }
72eb7ea8 12420 return ret;
a790ae38 12421 case TARGET_NR_getxattr:
30297b55 12422 case TARGET_NR_lgetxattr:
a790ae38 12423 {
77c9f177 12424 void *n, *v = 0;
e3c33ec6
PM
12425 if (arg3) {
12426 v = lock_user(VERIFY_WRITE, arg3, arg4, 0);
12427 if (!v) {
72eb7ea8 12428 return -TARGET_EFAULT;
e3c33ec6
PM
12429 }
12430 }
a790ae38
ACH
12431 p = lock_user_string(arg1);
12432 n = lock_user_string(arg2);
e3c33ec6 12433 if (p && n) {
30297b55
PM
12434 if (num == TARGET_NR_getxattr) {
12435 ret = get_errno(getxattr(p, n, v, arg4));
12436 } else {
12437 ret = get_errno(lgetxattr(p, n, v, arg4));
12438 }
a790ae38
ACH
12439 } else {
12440 ret = -TARGET_EFAULT;
12441 }
12442 unlock_user(p, arg1, 0);
12443 unlock_user(n, arg2, 0);
12444 unlock_user(v, arg3, arg4);
12445 }
72eb7ea8 12446 return ret;
30297b55
PM
12447 case TARGET_NR_fgetxattr:
12448 {
12449 void *n, *v = 0;
12450 if (arg3) {
12451 v = lock_user(VERIFY_WRITE, arg3, arg4, 0);
12452 if (!v) {
72eb7ea8 12453 return -TARGET_EFAULT;
30297b55
PM
12454 }
12455 }
12456 n = lock_user_string(arg2);
12457 if (n) {
12458 ret = get_errno(fgetxattr(arg1, n, v, arg4));
12459 } else {
12460 ret = -TARGET_EFAULT;
12461 }
12462 unlock_user(n, arg2, 0);
12463 unlock_user(v, arg3, arg4);
12464 }
72eb7ea8 12465 return ret;
a790ae38 12466 case TARGET_NR_removexattr:
30297b55 12467 case TARGET_NR_lremovexattr:
a790ae38 12468 {
77c9f177 12469 void *n;
a790ae38
ACH
12470 p = lock_user_string(arg1);
12471 n = lock_user_string(arg2);
12472 if (p && n) {
30297b55
PM
12473 if (num == TARGET_NR_removexattr) {
12474 ret = get_errno(removexattr(p, n));
12475 } else {
12476 ret = get_errno(lremovexattr(p, n));
12477 }
a790ae38
ACH
12478 } else {
12479 ret = -TARGET_EFAULT;
12480 }
12481 unlock_user(p, arg1, 0);
12482 unlock_user(n, arg2, 0);
12483 }
72eb7ea8 12484 return ret;
30297b55
PM
12485 case TARGET_NR_fremovexattr:
12486 {
12487 void *n;
12488 n = lock_user_string(arg2);
12489 if (n) {
12490 ret = get_errno(fremovexattr(arg1, n));
12491 } else {
12492 ret = -TARGET_EFAULT;
12493 }
12494 unlock_user(n, arg2, 0);
12495 }
72eb7ea8 12496 return ret;
ebc05488 12497#endif
a790ae38 12498#endif /* CONFIG_ATTR */
ebc05488 12499#ifdef TARGET_NR_set_thread_area
5cd4393b 12500 case TARGET_NR_set_thread_area:
8d18e893 12501#if defined(TARGET_MIPS)
0effdc29 12502 cpu_env->active_tc.CP0_UserLocal = arg1;
72eb7ea8 12503 return 0;
ef96779b
EI
12504#elif defined(TARGET_CRIS)
12505 if (arg1 & 0xff)
12506 ret = -TARGET_EINVAL;
12507 else {
0effdc29 12508 cpu_env->pregs[PR_PID] = arg1;
ef96779b
EI
12509 ret = 0;
12510 }
72eb7ea8 12511 return ret;
8d18e893 12512#elif defined(TARGET_I386) && defined(TARGET_ABI32)
72eb7ea8 12513 return do_set_thread_area(cpu_env, arg1);
1ccd9374
PM
12514#elif defined(TARGET_M68K)
12515 {
0429a971 12516 TaskState *ts = cpu->opaque;
1ccd9374 12517 ts->tp_value = arg1;
72eb7ea8 12518 return 0;
1ccd9374 12519 }
6f5b89a0 12520#else
10f45d98 12521 return -TARGET_ENOSYS;
6f5b89a0
TS
12522#endif
12523#endif
12524#ifdef TARGET_NR_get_thread_area
5cd4393b 12525 case TARGET_NR_get_thread_area:
8d18e893 12526#if defined(TARGET_I386) && defined(TARGET_ABI32)
72eb7ea8 12527 return do_get_thread_area(cpu_env, arg1);
1ccd9374
PM
12528#elif defined(TARGET_M68K)
12529 {
0429a971 12530 TaskState *ts = cpu->opaque;
72eb7ea8 12531 return ts->tp_value;
1ccd9374 12532 }
8d18e893 12533#else
10f45d98 12534 return -TARGET_ENOSYS;
48dc41eb 12535#endif
8d18e893 12536#endif
48dc41eb
FB
12537#ifdef TARGET_NR_getdomainname
12538 case TARGET_NR_getdomainname:
10f45d98 12539 return -TARGET_ENOSYS;
ebc05488 12540#endif
6f5b89a0 12541
12e3340c
MF
12542#ifdef TARGET_NR_clock_settime
12543 case TARGET_NR_clock_settime:
12544 {
12545 struct timespec ts;
12546
12547 ret = target_to_host_timespec(&ts, arg2);
12548 if (!is_error(ret)) {
12549 ret = get_errno(clock_settime(arg1, &ts));
12550 }
72eb7ea8 12551 return ret;
12e3340c
MF
12552 }
12553#endif
c6c8d102
AF
12554#ifdef TARGET_NR_clock_settime64
12555 case TARGET_NR_clock_settime64:
12556 {
12557 struct timespec ts;
12558
12559 ret = target_to_host_timespec64(&ts, arg2);
12560 if (!is_error(ret)) {
12561 ret = get_errno(clock_settime(arg1, &ts));
12562 }
12563 return ret;
12564 }
12565#endif
b5906f95
TS
12566#ifdef TARGET_NR_clock_gettime
12567 case TARGET_NR_clock_gettime:
12568 {
12569 struct timespec ts;
12570 ret = get_errno(clock_gettime(arg1, &ts));
12571 if (!is_error(ret)) {
b9f9908e 12572 ret = host_to_target_timespec(arg2, &ts);
b5906f95 12573 }
72eb7ea8 12574 return ret;
b5906f95
TS
12575 }
12576#endif
c6c8d102
AF
12577#ifdef TARGET_NR_clock_gettime64
12578 case TARGET_NR_clock_gettime64:
12579 {
12580 struct timespec ts;
12581 ret = get_errno(clock_gettime(arg1, &ts));
12582 if (!is_error(ret)) {
12583 ret = host_to_target_timespec64(arg2, &ts);
12584 }
12585 return ret;
12586 }
12587#endif
b5906f95
TS
12588#ifdef TARGET_NR_clock_getres
12589 case TARGET_NR_clock_getres:
12590 {
12591 struct timespec ts;
12592 ret = get_errno(clock_getres(arg1, &ts));
12593 if (!is_error(ret)) {
12594 host_to_target_timespec(arg2, &ts);
12595 }
72eb7ea8 12596 return ret;
b5906f95
TS
12597 }
12598#endif
828cb3a1
FB
12599#ifdef TARGET_NR_clock_getres_time64
12600 case TARGET_NR_clock_getres_time64:
12601 {
12602 struct timespec ts;
12603 ret = get_errno(clock_getres(arg1, &ts));
12604 if (!is_error(ret)) {
12605 host_to_target_timespec64(arg2, &ts);
12606 }
12607 return ret;
12608 }
12609#endif
63d7651b
PB
12610#ifdef TARGET_NR_clock_nanosleep
12611 case TARGET_NR_clock_nanosleep:
12612 {
12613 struct timespec ts;
b09d6406
FB
12614 if (target_to_host_timespec(&ts, arg3)) {
12615 return -TARGET_EFAULT;
12616 }
9e518226
PM
12617 ret = get_errno(safe_clock_nanosleep(arg1, arg2,
12618 &ts, arg4 ? &ts : NULL));
8ec68a0a
LV
12619 /*
12620 * if the call is interrupted by a signal handler, it fails
12621 * with error -TARGET_EINTR and if arg4 is not NULL and arg2 is not
12622 * TIMER_ABSTIME, it returns the remaining unslept time in arg4.
12623 */
b09d6406
FB
12624 if (ret == -TARGET_EINTR && arg4 && arg2 != TIMER_ABSTIME &&
12625 host_to_target_timespec(arg4, &ts)) {
12626 return -TARGET_EFAULT;
8ec68a0a 12627 }
8fbe8fdf 12628
72eb7ea8 12629 return ret;
63d7651b
PB
12630 }
12631#endif
6ac03b2c
FB
12632#ifdef TARGET_NR_clock_nanosleep_time64
12633 case TARGET_NR_clock_nanosleep_time64:
12634 {
12635 struct timespec ts;
12636
12637 if (target_to_host_timespec64(&ts, arg3)) {
12638 return -TARGET_EFAULT;
12639 }
12640
12641 ret = get_errno(safe_clock_nanosleep(arg1, arg2,
12642 &ts, arg4 ? &ts : NULL));
12643
12644 if (ret == -TARGET_EINTR && arg4 && arg2 != TIMER_ABSTIME &&
12645 host_to_target_timespec64(arg4, &ts)) {
12646 return -TARGET_EFAULT;
12647 }
12648 return ret;
12649 }
12650#endif
b5906f95 12651
9a7f682c 12652#if defined(TARGET_NR_set_tid_address)
6f5b89a0 12653 case TARGET_NR_set_tid_address:
9a7f682c
HD
12654 {
12655 TaskState *ts = cpu->opaque;
12656 ts->child_tidptr = arg1;
12657 /* do not call host set_tid_address() syscall, instead return tid() */
12658 return get_errno(sys_gettid());
12659 }
6f5b89a0
TS
12660#endif
12661
4cae1d16 12662 case TARGET_NR_tkill:
72eb7ea8 12663 return get_errno(safe_tkill((int)arg1, target_to_host_signal(arg2)));
4cae1d16 12664
71455574 12665 case TARGET_NR_tgkill:
72eb7ea8
RH
12666 return get_errno(safe_tgkill((int)arg1, (int)arg2,
12667 target_to_host_signal(arg3)));
71455574 12668
4f2b1fe8
TS
12669#ifdef TARGET_NR_set_robust_list
12670 case TARGET_NR_set_robust_list:
e9a970a8
PM
12671 case TARGET_NR_get_robust_list:
12672 /* The ABI for supporting robust futexes has userspace pass
12673 * the kernel a pointer to a linked list which is updated by
12674 * userspace after the syscall; the list is walked by the kernel
12675 * when the thread exits. Since the linked list in QEMU guest
12676 * memory isn't a valid linked list for the host and we have
12677 * no way to reliably intercept the thread-death event, we can't
12678 * support these. Silently return ENOSYS so that guest userspace
12679 * falls back to a non-robust futex implementation (which should
12680 * be OK except in the corner case of the guest crashing while
12681 * holding a mutex that is shared with another process via
12682 * shared memory).
12683 */
10f45d98 12684 return -TARGET_ENOSYS;
4f2b1fe8
TS
12685#endif
12686
1acae9f2 12687#if defined(TARGET_NR_utimensat)
9007f0ef
TS
12688 case TARGET_NR_utimensat:
12689 {
ebc996f3
RV
12690 struct timespec *tsp, ts[2];
12691 if (!arg3) {
12692 tsp = NULL;
12693 } else {
b3a3af70
FB
12694 if (target_to_host_timespec(ts, arg3)) {
12695 return -TARGET_EFAULT;
12696 }
12697 if (target_to_host_timespec(ts + 1, arg3 +
12698 sizeof(struct target_timespec))) {
12699 return -TARGET_EFAULT;
12700 }
ebc996f3
RV
12701 tsp = ts;
12702 }
9007f0ef 12703 if (!arg2)
ebc996f3 12704 ret = get_errno(sys_utimensat(arg1, NULL, tsp, arg4));
9007f0ef 12705 else {
579a97f7 12706 if (!(p = lock_user_string(arg2))) {
259841c1 12707 return -TARGET_EFAULT;
579a97f7 12708 }
ebc996f3 12709 ret = get_errno(sys_utimensat(arg1, path(p), tsp, arg4));
579a97f7 12710 unlock_user(p, arg2, 0);
cac46eb0
FB
12711 }
12712 }
12713 return ret;
12714#endif
12715#ifdef TARGET_NR_utimensat_time64
12716 case TARGET_NR_utimensat_time64:
12717 {
12718 struct timespec *tsp, ts[2];
12719 if (!arg3) {
12720 tsp = NULL;
12721 } else {
12722 if (target_to_host_timespec64(ts, arg3)) {
12723 return -TARGET_EFAULT;
12724 }
12725 if (target_to_host_timespec64(ts + 1, arg3 +
12726 sizeof(struct target__kernel_timespec))) {
12727 return -TARGET_EFAULT;
12728 }
12729 tsp = ts;
12730 }
12731 if (!arg2)
12732 ret = get_errno(sys_utimensat(arg1, NULL, tsp, arg4));
12733 else {
12734 p = lock_user_string(arg2);
12735 if (!p) {
12736 return -TARGET_EFAULT;
12737 }
12738 ret = get_errno(sys_utimensat(arg1, path(p), tsp, arg4));
12739 unlock_user(p, arg2, 0);
9007f0ef
TS
12740 }
12741 }
72eb7ea8 12742 return ret;
9007f0ef 12743#endif
859e8a89 12744#ifdef TARGET_NR_futex
bd0c5661 12745 case TARGET_NR_futex:
0fbc0f8d 12746 return do_futex(cpu, false, arg1, arg2, arg3, arg4, arg5, arg6);
859e8a89 12747#endif
14690296
AF
12748#ifdef TARGET_NR_futex_time64
12749 case TARGET_NR_futex_time64:
0fbc0f8d 12750 return do_futex(cpu, true, arg1, arg2, arg3, arg4, arg5, arg6);
14690296 12751#endif
33f53ac5
PB
12752#ifdef CONFIG_INOTIFY
12753#if defined(TARGET_NR_inotify_init)
39b59763 12754 case TARGET_NR_inotify_init:
33f53ac5 12755 ret = get_errno(inotify_init());
b929f7e5
PMD
12756 if (ret >= 0) {
12757 fd_trans_register(ret, &target_inotify_trans);
12758 }
72eb7ea8 12759 return ret;
39b59763 12760#endif
33f53ac5 12761#if defined(TARGET_NR_inotify_init1) && defined(CONFIG_INOTIFY1)
c05c7a73 12762 case TARGET_NR_inotify_init1:
33f53ac5 12763 ret = get_errno(inotify_init1(target_to_host_bitmask(arg1,
fea243e9 12764 fcntl_flags_tbl)));
b929f7e5
PMD
12765 if (ret >= 0) {
12766 fd_trans_register(ret, &target_inotify_trans);
12767 }
72eb7ea8 12768 return ret;
c05c7a73 12769#endif
33f53ac5 12770#if defined(TARGET_NR_inotify_add_watch)
39b59763
AJ
12771 case TARGET_NR_inotify_add_watch:
12772 p = lock_user_string(arg2);
33f53ac5 12773 ret = get_errno(inotify_add_watch(arg1, path(p), arg3));
39b59763 12774 unlock_user(p, arg2, 0);
72eb7ea8 12775 return ret;
39b59763 12776#endif
33f53ac5 12777#if defined(TARGET_NR_inotify_rm_watch)
39b59763 12778 case TARGET_NR_inotify_rm_watch:
33f53ac5
PB
12779 return get_errno(inotify_rm_watch(arg1, arg2));
12780#endif
39b59763 12781#endif
9007f0ef 12782
8ec9cf89 12783#if defined(TARGET_NR_mq_open) && defined(__NR_mq_open)
24e1003a
AJ
12784 case TARGET_NR_mq_open:
12785 {
c7536ab6 12786 struct mq_attr posix_mq_attr;
26400775 12787 struct mq_attr *pposix_mq_attr;
c7536ab6 12788 int host_flags;
24e1003a 12789
c7536ab6 12790 host_flags = target_to_host_bitmask(arg2, fcntl_flags_tbl);
26400775
LD
12791 pposix_mq_attr = NULL;
12792 if (arg4) {
12793 if (copy_from_user_mq_attr(&posix_mq_attr, arg4) != 0) {
2852aafd 12794 return -TARGET_EFAULT;
26400775
LD
12795 }
12796 pposix_mq_attr = &posix_mq_attr;
c7536ab6 12797 }
24e1003a 12798 p = lock_user_string(arg1 - 1);
c7536ab6 12799 if (!p) {
2852aafd 12800 return -TARGET_EFAULT;
b6ce1f6b 12801 }
26400775 12802 ret = get_errno(mq_open(p, host_flags, arg3, pposix_mq_attr));
24e1003a
AJ
12803 unlock_user (p, arg1, 0);
12804 }
72eb7ea8 12805 return ret;
24e1003a
AJ
12806
12807 case TARGET_NR_mq_unlink:
12808 p = lock_user_string(arg1 - 1);
3211215e 12809 if (!p) {
72eb7ea8 12810 return -TARGET_EFAULT;
3211215e 12811 }
24e1003a
AJ
12812 ret = get_errno(mq_unlink(p));
12813 unlock_user (p, arg1, 0);
72eb7ea8 12814 return ret;
24e1003a 12815
859e8a89 12816#ifdef TARGET_NR_mq_timedsend
24e1003a
AJ
12817 case TARGET_NR_mq_timedsend:
12818 {
12819 struct timespec ts;
12820
12821 p = lock_user (VERIFY_READ, arg2, arg3, 1);
12822 if (arg5 != 0) {
dcbcf5cf
FB
12823 if (target_to_host_timespec(&ts, arg5)) {
12824 return -TARGET_EFAULT;
12825 }
d40ecd66 12826 ret = get_errno(safe_mq_timedsend(arg1, p, arg3, arg4, &ts));
dcbcf5cf
FB
12827 if (!is_error(ret) && host_to_target_timespec(arg5, &ts)) {
12828 return -TARGET_EFAULT;
12829 }
d40ecd66
PM
12830 } else {
12831 ret = get_errno(safe_mq_timedsend(arg1, p, arg3, arg4, NULL));
24e1003a 12832 }
24e1003a
AJ
12833 unlock_user (p, arg2, arg3);
12834 }
72eb7ea8 12835 return ret;
859e8a89 12836#endif
d107e375
FB
12837#ifdef TARGET_NR_mq_timedsend_time64
12838 case TARGET_NR_mq_timedsend_time64:
12839 {
12840 struct timespec ts;
12841
12842 p = lock_user(VERIFY_READ, arg2, arg3, 1);
12843 if (arg5 != 0) {
12844 if (target_to_host_timespec64(&ts, arg5)) {
12845 return -TARGET_EFAULT;
12846 }
12847 ret = get_errno(safe_mq_timedsend(arg1, p, arg3, arg4, &ts));
12848 if (!is_error(ret) && host_to_target_timespec64(arg5, &ts)) {
12849 return -TARGET_EFAULT;
12850 }
12851 } else {
12852 ret = get_errno(safe_mq_timedsend(arg1, p, arg3, arg4, NULL));
12853 }
12854 unlock_user(p, arg2, arg3);
12855 }
12856 return ret;
12857#endif
24e1003a 12858
859e8a89 12859#ifdef TARGET_NR_mq_timedreceive
24e1003a
AJ
12860 case TARGET_NR_mq_timedreceive:
12861 {
12862 struct timespec ts;
12863 unsigned int prio;
12864
12865 p = lock_user (VERIFY_READ, arg2, arg3, 1);
12866 if (arg5 != 0) {
dcbcf5cf
FB
12867 if (target_to_host_timespec(&ts, arg5)) {
12868 return -TARGET_EFAULT;
12869 }
d40ecd66
PM
12870 ret = get_errno(safe_mq_timedreceive(arg1, p, arg3,
12871 &prio, &ts));
dcbcf5cf
FB
12872 if (!is_error(ret) && host_to_target_timespec(arg5, &ts)) {
12873 return -TARGET_EFAULT;
12874 }
d40ecd66
PM
12875 } else {
12876 ret = get_errno(safe_mq_timedreceive(arg1, p, arg3,
12877 &prio, NULL));
24e1003a 12878 }
24e1003a
AJ
12879 unlock_user (p, arg2, arg3);
12880 if (arg4 != 0)
12881 put_user_u32(prio, arg4);
12882 }
72eb7ea8 12883 return ret;
859e8a89 12884#endif
d107e375
FB
12885#ifdef TARGET_NR_mq_timedreceive_time64
12886 case TARGET_NR_mq_timedreceive_time64:
12887 {
12888 struct timespec ts;
12889 unsigned int prio;
12890
12891 p = lock_user(VERIFY_READ, arg2, arg3, 1);
12892 if (arg5 != 0) {
12893 if (target_to_host_timespec64(&ts, arg5)) {
12894 return -TARGET_EFAULT;
12895 }
12896 ret = get_errno(safe_mq_timedreceive(arg1, p, arg3,
12897 &prio, &ts));
12898 if (!is_error(ret) && host_to_target_timespec64(arg5, &ts)) {
12899 return -TARGET_EFAULT;
12900 }
12901 } else {
12902 ret = get_errno(safe_mq_timedreceive(arg1, p, arg3,
12903 &prio, NULL));
12904 }
12905 unlock_user(p, arg2, arg3);
12906 if (arg4 != 0) {
12907 put_user_u32(prio, arg4);
12908 }
12909 }
12910 return ret;
12911#endif
24e1003a
AJ
12912
12913 /* Not implemented for now... */
12914/* case TARGET_NR_mq_notify: */
12915/* break; */
12916
12917 case TARGET_NR_mq_getsetattr:
12918 {
12919 struct mq_attr posix_mq_attr_in, posix_mq_attr_out;
12920 ret = 0;
24e1003a
AJ
12921 if (arg2 != 0) {
12922 copy_from_user_mq_attr(&posix_mq_attr_in, arg2);
a23ea409
MF
12923 ret = get_errno(mq_setattr(arg1, &posix_mq_attr_in,
12924 &posix_mq_attr_out));
12925 } else if (arg3 != 0) {
12926 ret = get_errno(mq_getattr(arg1, &posix_mq_attr_out));
12927 }
12928 if (ret == 0 && arg3 != 0) {
12929 copy_to_user_mq_attr(arg3, &posix_mq_attr_out);
24e1003a 12930 }
24e1003a 12931 }
72eb7ea8 12932 return ret;
24e1003a
AJ
12933#endif
12934
3ce34dfb
VS
12935#ifdef CONFIG_SPLICE
12936#ifdef TARGET_NR_tee
12937 case TARGET_NR_tee:
12938 {
12939 ret = get_errno(tee(arg1,arg2,arg3,arg4));
12940 }
72eb7ea8 12941 return ret;
3ce34dfb
VS
12942#endif
12943#ifdef TARGET_NR_splice
12944 case TARGET_NR_splice:
12945 {
12946 loff_t loff_in, loff_out;
12947 loff_t *ploff_in = NULL, *ploff_out = NULL;
17644b36
AS
12948 if (arg2) {
12949 if (get_user_u64(loff_in, arg2)) {
2852aafd 12950 return -TARGET_EFAULT;
17644b36 12951 }
3ce34dfb
VS
12952 ploff_in = &loff_in;
12953 }
17644b36
AS
12954 if (arg4) {
12955 if (get_user_u64(loff_out, arg4)) {
2852aafd 12956 return -TARGET_EFAULT;
17644b36 12957 }
3ce34dfb
VS
12958 ploff_out = &loff_out;
12959 }
12960 ret = get_errno(splice(arg1, ploff_in, arg3, ploff_out, arg5, arg6));
17644b36
AS
12961 if (arg2) {
12962 if (put_user_u64(loff_in, arg2)) {
2852aafd 12963 return -TARGET_EFAULT;
17644b36
AS
12964 }
12965 }
12966 if (arg4) {
12967 if (put_user_u64(loff_out, arg4)) {
2852aafd 12968 return -TARGET_EFAULT;
17644b36
AS
12969 }
12970 }
3ce34dfb 12971 }
72eb7ea8 12972 return ret;
3ce34dfb
VS
12973#endif
12974#ifdef TARGET_NR_vmsplice
12975 case TARGET_NR_vmsplice:
12976 {
f287b2c2
RH
12977 struct iovec *vec = lock_iovec(VERIFY_READ, arg2, arg3, 1);
12978 if (vec != NULL) {
12979 ret = get_errno(vmsplice(arg1, vec, arg3, arg4));
12980 unlock_iovec(vec, arg2, arg3, 0);
12981 } else {
12982 ret = -host_to_target_errno(errno);
12983 }
3ce34dfb 12984 }
72eb7ea8 12985 return ret;
3ce34dfb
VS
12986#endif
12987#endif /* CONFIG_SPLICE */
c2882b96
RV
12988#ifdef CONFIG_EVENTFD
12989#if defined(TARGET_NR_eventfd)
12990 case TARGET_NR_eventfd:
12991 ret = get_errno(eventfd(arg1, 0));
b929f7e5
PMD
12992 if (ret >= 0) {
12993 fd_trans_register(ret, &target_eventfd_trans);
12994 }
72eb7ea8 12995 return ret;
c2882b96
RV
12996#endif
12997#if defined(TARGET_NR_eventfd2)
12998 case TARGET_NR_eventfd2:
5947c697 12999 {
78721301 13000 int host_flags = arg2 & (~(TARGET_O_NONBLOCK_MASK | TARGET_O_CLOEXEC));
5947c697
PJ
13001 if (arg2 & TARGET_O_NONBLOCK) {
13002 host_flags |= O_NONBLOCK;
13003 }
13004 if (arg2 & TARGET_O_CLOEXEC) {
13005 host_flags |= O_CLOEXEC;
13006 }
13007 ret = get_errno(eventfd(arg1, host_flags));
b929f7e5
PMD
13008 if (ret >= 0) {
13009 fd_trans_register(ret, &target_eventfd_trans);
13010 }
72eb7ea8 13011 return ret;
5947c697 13012 }
c2882b96
RV
13013#endif
13014#endif /* CONFIG_EVENTFD */
d0927938
UH
13015#if defined(CONFIG_FALLOCATE) && defined(TARGET_NR_fallocate)
13016 case TARGET_NR_fallocate:
eeed2291 13017#if TARGET_ABI_BITS == 32 && !defined(TARGET_ABI_MIPSN32)
20249ae1
AG
13018 ret = get_errno(fallocate(arg1, arg2, target_offset64(arg3, arg4),
13019 target_offset64(arg5, arg6)));
13020#else
d0927938 13021 ret = get_errno(fallocate(arg1, arg2, arg3, arg4));
20249ae1 13022#endif
72eb7ea8 13023 return ret;
c727f47d
PM
13024#endif
13025#if defined(CONFIG_SYNC_FILE_RANGE)
13026#if defined(TARGET_NR_sync_file_range)
13027 case TARGET_NR_sync_file_range:
eeed2291 13028#if TARGET_ABI_BITS == 32 && !defined(TARGET_ABI_MIPSN32)
bfcedc57
RV
13029#if defined(TARGET_MIPS)
13030 ret = get_errno(sync_file_range(arg1, target_offset64(arg3, arg4),
13031 target_offset64(arg5, arg6), arg7));
13032#else
c727f47d
PM
13033 ret = get_errno(sync_file_range(arg1, target_offset64(arg2, arg3),
13034 target_offset64(arg4, arg5), arg6));
bfcedc57 13035#endif /* !TARGET_MIPS */
c727f47d
PM
13036#else
13037 ret = get_errno(sync_file_range(arg1, arg2, arg3, arg4));
13038#endif
72eb7ea8 13039 return ret;
c727f47d 13040#endif
5bcb4986
LV
13041#if defined(TARGET_NR_sync_file_range2) || \
13042 defined(TARGET_NR_arm_sync_file_range)
c727f47d
PM
13043#if defined(TARGET_NR_sync_file_range2)
13044 case TARGET_NR_sync_file_range2:
5bcb4986
LV
13045#endif
13046#if defined(TARGET_NR_arm_sync_file_range)
13047 case TARGET_NR_arm_sync_file_range:
13048#endif
c727f47d 13049 /* This is like sync_file_range but the arguments are reordered */
eeed2291 13050#if TARGET_ABI_BITS == 32 && !defined(TARGET_ABI_MIPSN32)
c727f47d
PM
13051 ret = get_errno(sync_file_range(arg1, target_offset64(arg3, arg4),
13052 target_offset64(arg5, arg6), arg2));
13053#else
13054 ret = get_errno(sync_file_range(arg1, arg3, arg4, arg2));
13055#endif
72eb7ea8 13056 return ret;
c727f47d 13057#endif
3b6edd16 13058#endif
e36800c9
LV
13059#if defined(TARGET_NR_signalfd4)
13060 case TARGET_NR_signalfd4:
72eb7ea8 13061 return do_signalfd4(arg1, arg2, arg4);
e36800c9
LV
13062#endif
13063#if defined(TARGET_NR_signalfd)
13064 case TARGET_NR_signalfd:
72eb7ea8 13065 return do_signalfd4(arg1, arg2, 0);
e36800c9 13066#endif
3b6edd16
PM
13067#if defined(CONFIG_EPOLL)
13068#if defined(TARGET_NR_epoll_create)
13069 case TARGET_NR_epoll_create:
72eb7ea8 13070 return get_errno(epoll_create(arg1));
3b6edd16
PM
13071#endif
13072#if defined(TARGET_NR_epoll_create1) && defined(CONFIG_EPOLL_CREATE1)
13073 case TARGET_NR_epoll_create1:
386d3865 13074 return get_errno(epoll_create1(target_to_host_bitmask(arg1, fcntl_flags_tbl)));
3b6edd16
PM
13075#endif
13076#if defined(TARGET_NR_epoll_ctl)
13077 case TARGET_NR_epoll_ctl:
13078 {
13079 struct epoll_event ep;
13080 struct epoll_event *epp = 0;
13081 if (arg4) {
c7811022
L
13082 if (arg2 != EPOLL_CTL_DEL) {
13083 struct target_epoll_event *target_ep;
13084 if (!lock_user_struct(VERIFY_READ, target_ep, arg4, 1)) {
13085 return -TARGET_EFAULT;
13086 }
13087 ep.events = tswap32(target_ep->events);
13088 /*
13089 * The epoll_data_t union is just opaque data to the kernel,
13090 * so we transfer all 64 bits across and need not worry what
13091 * actual data type it is.
13092 */
13093 ep.data.u64 = tswap64(target_ep->data.u64);
13094 unlock_user_struct(target_ep, arg4, 0);
3b6edd16 13095 }
c7811022
L
13096 /*
13097 * before kernel 2.6.9, EPOLL_CTL_DEL operation required a
13098 * non-null pointer, even though this argument is ignored.
13099 *
3b6edd16 13100 */
3b6edd16
PM
13101 epp = &ep;
13102 }
72eb7ea8 13103 return get_errno(epoll_ctl(arg1, arg2, arg3, epp));
3b6edd16
PM
13104 }
13105#endif
13106
227f0214 13107#if defined(TARGET_NR_epoll_wait) || defined(TARGET_NR_epoll_pwait)
3b6edd16
PM
13108#if defined(TARGET_NR_epoll_wait)
13109 case TARGET_NR_epoll_wait:
13110#endif
227f0214 13111#if defined(TARGET_NR_epoll_pwait)
3b6edd16
PM
13112 case TARGET_NR_epoll_pwait:
13113#endif
13114 {
13115 struct target_epoll_event *target_ep;
13116 struct epoll_event *ep;
13117 int epfd = arg1;
13118 int maxevents = arg3;
13119 int timeout = arg4;
13120
2ba7fae3 13121 if (maxevents <= 0 || maxevents > TARGET_EP_MAX_EVENTS) {
72eb7ea8 13122 return -TARGET_EINVAL;
2ba7fae3
PM
13123 }
13124
3b6edd16
PM
13125 target_ep = lock_user(VERIFY_WRITE, arg2,
13126 maxevents * sizeof(struct target_epoll_event), 1);
13127 if (!target_ep) {
2852aafd 13128 return -TARGET_EFAULT;
3b6edd16
PM
13129 }
13130
04c95f4d
PM
13131 ep = g_try_new(struct epoll_event, maxevents);
13132 if (!ep) {
13133 unlock_user(target_ep, arg2, 0);
72eb7ea8 13134 return -TARGET_ENOMEM;
04c95f4d 13135 }
3b6edd16
PM
13136
13137 switch (num) {
227f0214 13138#if defined(TARGET_NR_epoll_pwait)
3b6edd16
PM
13139 case TARGET_NR_epoll_pwait:
13140 {
cd0e31a4 13141 sigset_t *set = NULL;
3b6edd16
PM
13142
13143 if (arg5) {
cd0e31a4
RH
13144 ret = process_sigsuspend_mask(&set, arg5, arg6);
13145 if (ret != 0) {
c815701e
PM
13146 break;
13147 }
3b6edd16
PM
13148 }
13149
227f0214
PM
13150 ret = get_errno(safe_epoll_pwait(epfd, ep, maxevents, timeout,
13151 set, SIGSET_T_SIZE));
cd0e31a4
RH
13152
13153 if (set) {
13154 finish_sigsuspend_mask(ret);
13155 }
3b6edd16
PM
13156 break;
13157 }
13158#endif
13159#if defined(TARGET_NR_epoll_wait)
13160 case TARGET_NR_epoll_wait:
227f0214
PM
13161 ret = get_errno(safe_epoll_pwait(epfd, ep, maxevents, timeout,
13162 NULL, 0));
3b6edd16
PM
13163 break;
13164#endif
13165 default:
13166 ret = -TARGET_ENOSYS;
13167 }
13168 if (!is_error(ret)) {
13169 int i;
13170 for (i = 0; i < ret; i++) {
13171 target_ep[i].events = tswap32(ep[i].events);
13172 target_ep[i].data.u64 = tswap64(ep[i].data.u64);
13173 }
04c95f4d
PM
13174 unlock_user(target_ep, arg2,
13175 ret * sizeof(struct target_epoll_event));
13176 } else {
13177 unlock_user(target_ep, arg2, 0);
3b6edd16 13178 }
04c95f4d 13179 g_free(ep);
72eb7ea8 13180 return ret;
3b6edd16
PM
13181 }
13182#endif
163a05a8
PM
13183#endif
13184#ifdef TARGET_NR_prlimit64
13185 case TARGET_NR_prlimit64:
13186 {
13187 /* args: pid, resource number, ptr to new rlimit, ptr to old rlimit */
13188 struct target_rlimit64 *target_rnew, *target_rold;
13189 struct host_rlimit64 rnew, rold, *rnewp = 0;
95018018 13190 int resource = target_to_host_resource(arg2);
055d92f8
TK
13191
13192 if (arg3 && (resource != RLIMIT_AS &&
13193 resource != RLIMIT_DATA &&
13194 resource != RLIMIT_STACK)) {
163a05a8 13195 if (!lock_user_struct(VERIFY_READ, target_rnew, arg3, 1)) {
2852aafd 13196 return -TARGET_EFAULT;
163a05a8 13197 }
9c1da8b5
IL
13198 __get_user(rnew.rlim_cur, &target_rnew->rlim_cur);
13199 __get_user(rnew.rlim_max, &target_rnew->rlim_max);
163a05a8
PM
13200 unlock_user_struct(target_rnew, arg3, 0);
13201 rnewp = &rnew;
13202 }
13203
95018018 13204 ret = get_errno(sys_prlimit64(arg1, resource, rnewp, arg4 ? &rold : 0));
163a05a8
PM
13205 if (!is_error(ret) && arg4) {
13206 if (!lock_user_struct(VERIFY_WRITE, target_rold, arg4, 1)) {
2852aafd 13207 return -TARGET_EFAULT;
163a05a8 13208 }
9c1da8b5
IL
13209 __put_user(rold.rlim_cur, &target_rold->rlim_cur);
13210 __put_user(rold.rlim_max, &target_rold->rlim_max);
163a05a8
PM
13211 unlock_user_struct(target_rold, arg4, 1);
13212 }
72eb7ea8 13213 return ret;
163a05a8 13214 }
3d21d29c
RH
13215#endif
13216#ifdef TARGET_NR_gethostname
13217 case TARGET_NR_gethostname:
13218 {
13219 char *name = lock_user(VERIFY_WRITE, arg1, arg2, 0);
13220 if (name) {
13221 ret = get_errno(gethostname(name, arg2));
13222 unlock_user(name, arg1, arg2);
13223 } else {
13224 ret = -TARGET_EFAULT;
13225 }
72eb7ea8 13226 return ret;
3d21d29c 13227 }
89aaf1a6
RV
13228#endif
13229#ifdef TARGET_NR_atomic_cmpxchg_32
13230 case TARGET_NR_atomic_cmpxchg_32:
13231 {
13232 /* should use start_exclusive from main.c */
13233 abi_ulong mem_value;
13234 if (get_user_u32(mem_value, arg6)) {
13235 target_siginfo_t info;
13236 info.si_signo = SIGSEGV;
13237 info.si_errno = 0;
13238 info.si_code = TARGET_SEGV_MAPERR;
13239 info._sifields._sigfault._addr = arg6;
0effdc29 13240 queue_signal(cpu_env, info.si_signo, QEMU_SI_FAULT, &info);
89aaf1a6
RV
13241 ret = 0xdeadbeef;
13242
13243 }
13244 if (mem_value == arg2)
13245 put_user_u32(arg1, arg6);
72eb7ea8 13246 return mem_value;
89aaf1a6
RV
13247 }
13248#endif
13249#ifdef TARGET_NR_atomic_barrier
13250 case TARGET_NR_atomic_barrier:
72eb7ea8
RH
13251 /* Like the kernel implementation and the
13252 qemu arm barrier, no-op this? */
13253 return 0;
d0927938 13254#endif
f4f1e10a
ECL
13255
13256#ifdef TARGET_NR_timer_create
13257 case TARGET_NR_timer_create:
13258 {
13259 /* args: clockid_t clockid, struct sigevent *sevp, timer_t *timerid */
13260
13261 struct sigevent host_sevp = { {0}, }, *phost_sevp = NULL;
f4f1e10a
ECL
13262
13263 int clkid = arg1;
13264 int timer_index = next_free_host_timer();
13265
13266 if (timer_index < 0) {
13267 ret = -TARGET_EAGAIN;
13268 } else {
13269 timer_t *phtimer = g_posix_timers + timer_index;
13270
13271 if (arg2) {
f4f1e10a 13272 phost_sevp = &host_sevp;
c065976f
PM
13273 ret = target_to_host_sigevent(phost_sevp, arg2);
13274 if (ret != 0) {
9e59899f 13275 free_host_timer_slot(timer_index);
72eb7ea8 13276 return ret;
c065976f 13277 }
f4f1e10a
ECL
13278 }
13279
13280 ret = get_errno(timer_create(clkid, phost_sevp, phtimer));
13281 if (ret) {
9e59899f 13282 free_host_timer_slot(timer_index);
f4f1e10a 13283 } else {
aecc8861 13284 if (put_user(TIMER_MAGIC | timer_index, arg3, target_timer_t)) {
9e59899f
PM
13285 timer_delete(*phtimer);
13286 free_host_timer_slot(timer_index);
2852aafd 13287 return -TARGET_EFAULT;
f4f1e10a 13288 }
f4f1e10a
ECL
13289 }
13290 }
72eb7ea8 13291 return ret;
f4f1e10a
ECL
13292 }
13293#endif
13294
13295#ifdef TARGET_NR_timer_settime
13296 case TARGET_NR_timer_settime:
13297 {
13298 /* args: timer_t timerid, int flags, const struct itimerspec *new_value,
13299 * struct itimerspec * old_value */
aecc8861 13300 target_timer_t timerid = get_timer_id(arg1);
e52a99f7 13301
aecc8861
AG
13302 if (timerid < 0) {
13303 ret = timerid;
13304 } else if (arg3 == 0) {
f4f1e10a
ECL
13305 ret = -TARGET_EINVAL;
13306 } else {
e52a99f7 13307 timer_t htimer = g_posix_timers[timerid];
f4f1e10a
ECL
13308 struct itimerspec hspec_new = {{0},}, hspec_old = {{0},};
13309
40c80b5e 13310 if (target_to_host_itimerspec(&hspec_new, arg3)) {
2852aafd 13311 return -TARGET_EFAULT;
40c80b5e 13312 }
f4f1e10a
ECL
13313 ret = get_errno(
13314 timer_settime(htimer, arg2, &hspec_new, &hspec_old));
40c80b5e 13315 if (arg4 && host_to_target_itimerspec(arg4, &hspec_old)) {
2852aafd 13316 return -TARGET_EFAULT;
40c80b5e 13317 }
f4f1e10a 13318 }
72eb7ea8 13319 return ret;
f4f1e10a
ECL
13320 }
13321#endif
13322
828cb3a1
FB
13323#ifdef TARGET_NR_timer_settime64
13324 case TARGET_NR_timer_settime64:
13325 {
13326 target_timer_t timerid = get_timer_id(arg1);
13327
13328 if (timerid < 0) {
13329 ret = timerid;
13330 } else if (arg3 == 0) {
13331 ret = -TARGET_EINVAL;
13332 } else {
13333 timer_t htimer = g_posix_timers[timerid];
13334 struct itimerspec hspec_new = {{0},}, hspec_old = {{0},};
13335
13336 if (target_to_host_itimerspec64(&hspec_new, arg3)) {
13337 return -TARGET_EFAULT;
13338 }
13339 ret = get_errno(
13340 timer_settime(htimer, arg2, &hspec_new, &hspec_old));
13341 if (arg4 && host_to_target_itimerspec64(arg4, &hspec_old)) {
13342 return -TARGET_EFAULT;
13343 }
13344 }
13345 return ret;
13346 }
13347#endif
13348
f4f1e10a
ECL
13349#ifdef TARGET_NR_timer_gettime
13350 case TARGET_NR_timer_gettime:
13351 {
13352 /* args: timer_t timerid, struct itimerspec *curr_value */
aecc8861 13353 target_timer_t timerid = get_timer_id(arg1);
e52a99f7 13354
aecc8861
AG
13355 if (timerid < 0) {
13356 ret = timerid;
13357 } else if (!arg2) {
13358 ret = -TARGET_EFAULT;
f4f1e10a 13359 } else {
e52a99f7 13360 timer_t htimer = g_posix_timers[timerid];
f4f1e10a
ECL
13361 struct itimerspec hspec;
13362 ret = get_errno(timer_gettime(htimer, &hspec));
13363
13364 if (host_to_target_itimerspec(arg2, &hspec)) {
13365 ret = -TARGET_EFAULT;
13366 }
13367 }
72eb7ea8 13368 return ret;
f4f1e10a
ECL
13369 }
13370#endif
13371
828cb3a1
FB
13372#ifdef TARGET_NR_timer_gettime64
13373 case TARGET_NR_timer_gettime64:
13374 {
13375 /* args: timer_t timerid, struct itimerspec64 *curr_value */
13376 target_timer_t timerid = get_timer_id(arg1);
13377
13378 if (timerid < 0) {
13379 ret = timerid;
13380 } else if (!arg2) {
13381 ret = -TARGET_EFAULT;
13382 } else {
13383 timer_t htimer = g_posix_timers[timerid];
13384 struct itimerspec hspec;
13385 ret = get_errno(timer_gettime(htimer, &hspec));
13386
13387 if (host_to_target_itimerspec64(arg2, &hspec)) {
13388 ret = -TARGET_EFAULT;
13389 }
13390 }
13391 return ret;
13392 }
13393#endif
13394
f4f1e10a
ECL
13395#ifdef TARGET_NR_timer_getoverrun
13396 case TARGET_NR_timer_getoverrun:
13397 {
13398 /* args: timer_t timerid */
aecc8861 13399 target_timer_t timerid = get_timer_id(arg1);
e52a99f7 13400
aecc8861
AG
13401 if (timerid < 0) {
13402 ret = timerid;
f4f1e10a 13403 } else {
e52a99f7 13404 timer_t htimer = g_posix_timers[timerid];
f4f1e10a
ECL
13405 ret = get_errno(timer_getoverrun(htimer));
13406 }
72eb7ea8 13407 return ret;
f4f1e10a
ECL
13408 }
13409#endif
13410
13411#ifdef TARGET_NR_timer_delete
13412 case TARGET_NR_timer_delete:
13413 {
13414 /* args: timer_t timerid */
aecc8861 13415 target_timer_t timerid = get_timer_id(arg1);
e52a99f7 13416
aecc8861
AG
13417 if (timerid < 0) {
13418 ret = timerid;
f4f1e10a 13419 } else {
e52a99f7 13420 timer_t htimer = g_posix_timers[timerid];
f4f1e10a 13421 ret = get_errno(timer_delete(htimer));
9e59899f 13422 free_host_timer_slot(timerid);
f4f1e10a 13423 }
72eb7ea8 13424 return ret;
f4f1e10a
ECL
13425 }
13426#endif
13427
51834341
RV
13428#if defined(TARGET_NR_timerfd_create) && defined(CONFIG_TIMERFD)
13429 case TARGET_NR_timerfd_create:
d759a62b
MM
13430 ret = get_errno(timerfd_create(arg1,
13431 target_to_host_bitmask(arg2, fcntl_flags_tbl)));
13432 if (ret >= 0) {
13433 fd_trans_register(ret, &target_timerfd_trans);
13434 }
13435 return ret;
51834341
RV
13436#endif
13437
13438#if defined(TARGET_NR_timerfd_gettime) && defined(CONFIG_TIMERFD)
13439 case TARGET_NR_timerfd_gettime:
13440 {
13441 struct itimerspec its_curr;
13442
13443 ret = get_errno(timerfd_gettime(arg1, &its_curr));
13444
13445 if (arg2 && host_to_target_itimerspec(arg2, &its_curr)) {
2852aafd 13446 return -TARGET_EFAULT;
51834341
RV
13447 }
13448 }
72eb7ea8 13449 return ret;
51834341
RV
13450#endif
13451
828cb3a1
FB
13452#if defined(TARGET_NR_timerfd_gettime64) && defined(CONFIG_TIMERFD)
13453 case TARGET_NR_timerfd_gettime64:
13454 {
13455 struct itimerspec its_curr;
13456
13457 ret = get_errno(timerfd_gettime(arg1, &its_curr));
13458
13459 if (arg2 && host_to_target_itimerspec64(arg2, &its_curr)) {
13460 return -TARGET_EFAULT;
13461 }
13462 }
13463 return ret;
13464#endif
13465
51834341
RV
13466#if defined(TARGET_NR_timerfd_settime) && defined(CONFIG_TIMERFD)
13467 case TARGET_NR_timerfd_settime:
13468 {
13469 struct itimerspec its_new, its_old, *p_new;
13470
13471 if (arg3) {
13472 if (target_to_host_itimerspec(&its_new, arg3)) {
2852aafd 13473 return -TARGET_EFAULT;
51834341
RV
13474 }
13475 p_new = &its_new;
13476 } else {
13477 p_new = NULL;
13478 }
13479
13480 ret = get_errno(timerfd_settime(arg1, arg2, p_new, &its_old));
13481
13482 if (arg4 && host_to_target_itimerspec(arg4, &its_old)) {
2852aafd 13483 return -TARGET_EFAULT;
51834341
RV
13484 }
13485 }
72eb7ea8 13486 return ret;
51834341
RV
13487#endif
13488
828cb3a1
FB
13489#if defined(TARGET_NR_timerfd_settime64) && defined(CONFIG_TIMERFD)
13490 case TARGET_NR_timerfd_settime64:
13491 {
13492 struct itimerspec its_new, its_old, *p_new;
13493
13494 if (arg3) {
13495 if (target_to_host_itimerspec64(&its_new, arg3)) {
13496 return -TARGET_EFAULT;
13497 }
13498 p_new = &its_new;
13499 } else {
13500 p_new = NULL;
13501 }
13502
13503 ret = get_errno(timerfd_settime(arg1, arg2, p_new, &its_old));
13504
13505 if (arg4 && host_to_target_itimerspec64(arg4, &its_old)) {
13506 return -TARGET_EFAULT;
13507 }
13508 }
13509 return ret;
13510#endif
13511
ab31cda3
PB
13512#if defined(TARGET_NR_ioprio_get) && defined(__NR_ioprio_get)
13513 case TARGET_NR_ioprio_get:
72eb7ea8 13514 return get_errno(ioprio_get(arg1, arg2));
ab31cda3
PB
13515#endif
13516
13517#if defined(TARGET_NR_ioprio_set) && defined(__NR_ioprio_set)
13518 case TARGET_NR_ioprio_set:
72eb7ea8 13519 return get_errno(ioprio_set(arg1, arg2, arg3));
ab31cda3
PB
13520#endif
13521
9af5c906
RV
13522#if defined(TARGET_NR_setns) && defined(CONFIG_SETNS)
13523 case TARGET_NR_setns:
72eb7ea8 13524 return get_errno(setns(arg1, arg2));
9af5c906
RV
13525#endif
13526#if defined(TARGET_NR_unshare) && defined(CONFIG_SETNS)
13527 case TARGET_NR_unshare:
72eb7ea8 13528 return get_errno(unshare(arg1));
9af5c906 13529#endif
2f14788c
LV
13530#if defined(TARGET_NR_kcmp) && defined(__NR_kcmp)
13531 case TARGET_NR_kcmp:
72eb7ea8 13532 return get_errno(kcmp(arg1, arg2, arg3, arg4, arg5));
2f14788c 13533#endif
fa97e38e
RH
13534#ifdef TARGET_NR_swapcontext
13535 case TARGET_NR_swapcontext:
13536 /* PowerPC specific. */
72eb7ea8 13537 return do_swapcontext(cpu_env, arg1, arg2, arg3);
fa97e38e 13538#endif
9bdfa4d2
SCW
13539#ifdef TARGET_NR_memfd_create
13540 case TARGET_NR_memfd_create:
13541 p = lock_user_string(arg1);
13542 if (!p) {
13543 return -TARGET_EFAULT;
13544 }
13545 ret = get_errno(memfd_create(p, arg2));
13546 fd_trans_unregister(ret);
13547 unlock_user(p, arg1, 0);
13548 return ret;
13549#endif
8500476f
AS
13550#if defined TARGET_NR_membarrier && defined __NR_membarrier
13551 case TARGET_NR_membarrier:
13552 return get_errno(membarrier(arg1, arg2));
13553#endif
9af5c906 13554
84946457
AS
13555#if defined(TARGET_NR_copy_file_range) && defined(__NR_copy_file_range)
13556 case TARGET_NR_copy_file_range:
13557 {
13558 loff_t inoff, outoff;
13559 loff_t *pinoff = NULL, *poutoff = NULL;
13560
13561 if (arg2) {
13562 if (get_user_u64(inoff, arg2)) {
13563 return -TARGET_EFAULT;
13564 }
13565 pinoff = &inoff;
13566 }
13567 if (arg4) {
13568 if (get_user_u64(outoff, arg4)) {
13569 return -TARGET_EFAULT;
13570 }
13571 poutoff = &outoff;
13572 }
0fa259dd 13573 /* Do not sign-extend the count parameter. */
84946457 13574 ret = get_errno(safe_copy_file_range(arg1, pinoff, arg3, poutoff,
0fa259dd 13575 (abi_ulong)arg5, arg6));
84946457
AS
13576 if (!is_error(ret) && ret > 0) {
13577 if (arg2) {
13578 if (put_user_u64(inoff, arg2)) {
13579 return -TARGET_EFAULT;
13580 }
13581 }
13582 if (arg4) {
13583 if (put_user_u64(outoff, arg4)) {
13584 return -TARGET_EFAULT;
13585 }
13586 }
13587 }
13588 }
13589 return ret;
13590#endif
13591
e10fbe8f
YT
13592#if defined(TARGET_NR_pivot_root)
13593 case TARGET_NR_pivot_root:
13594 {
13595 void *p2;
13596 p = lock_user_string(arg1); /* new_root */
13597 p2 = lock_user_string(arg2); /* put_old */
13598 if (!p || !p2) {
13599 ret = -TARGET_EFAULT;
13600 } else {
13601 ret = get_errno(pivot_root(p, p2));
13602 }
13603 unlock_user(p2, arg2, 0);
13604 unlock_user(p, arg1, 0);
13605 }
13606 return ret;
13607#endif
13608
9e1c7d98
RE
13609#if defined(TARGET_NR_riscv_hwprobe)
13610 case TARGET_NR_riscv_hwprobe:
13611 return do_riscv_hwprobe(cpu_env, arg1, arg2, arg3, arg4, arg5);
13612#endif
13613
31e31b8a 13614 default:
122f9c83 13615 qemu_log_mask(LOG_UNIMP, "Unsupported syscall: %d\n", num);
72eb7ea8 13616 return -TARGET_ENOSYS;
31e31b8a 13617 }
31e31b8a
FB
13618 return ret;
13619}
dc1ce18b 13620
a0939b89 13621abi_long do_syscall(CPUArchState *cpu_env, int num, abi_long arg1,
dc1ce18b
RH
13622 abi_long arg2, abi_long arg3, abi_long arg4,
13623 abi_long arg5, abi_long arg6, abi_long arg7,
13624 abi_long arg8)
13625{
29a0af61 13626 CPUState *cpu = env_cpu(cpu_env);
dc1ce18b
RH
13627 abi_long ret;
13628
13629#ifdef DEBUG_ERESTARTSYS
13630 /* Debug-only code for exercising the syscall-restart code paths
13631 * in the per-architecture cpu main loops: restart every syscall
13632 * the guest makes once before letting it through.
13633 */
13634 {
13635 static bool flag;
13636 flag = !flag;
13637 if (flag) {
af254a27 13638 return -QEMU_ERESTARTSYS;
dc1ce18b
RH
13639 }
13640 }
13641#endif
13642
c36f7a64
EC
13643 record_syscall_start(cpu, num, arg1,
13644 arg2, arg3, arg4, arg5, arg6, arg7, arg8);
dc1ce18b 13645
4b25a506 13646 if (unlikely(qemu_loglevel_mask(LOG_STRACE))) {
e400e119 13647 print_syscall(cpu_env, num, arg1, arg2, arg3, arg4, arg5, arg6);
4b25a506
JK
13648 }
13649
13650 ret = do_syscall1(cpu_env, num, arg1, arg2, arg3, arg4,
13651 arg5, arg6, arg7, arg8);
13652
13653 if (unlikely(qemu_loglevel_mask(LOG_STRACE))) {
e400e119
FB
13654 print_syscall_ret(cpu_env, num, ret, arg1, arg2,
13655 arg3, arg4, arg5, arg6);
dc1ce18b
RH
13656 }
13657
c36f7a64 13658 record_syscall_return(cpu, num, ret);
dc1ce18b
RH
13659 return ret;
13660}